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Anodal TDCS Increases the Resistance to Head Fakes in Basketball.” Journal of Cognitive Enhancement, vol. 4, no. 1, Springer Science and Business Media LLC, 2020, pp. 62–70, doi:10.1007/s41465-019-00133-8.","bibtex":"@article{Friehs_Güldenpenning_Frings_Weigelt_2020, title={Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball}, volume={4}, DOI={10.1007/s41465-019-00133-8}, number={1}, journal={Journal of Cognitive Enhancement}, publisher={Springer Science and Business Media LLC}, author={Friehs, Maximilian A. and Güldenpenning, Iris and Frings, Christian and Weigelt, Matthias}, year={2020}, pages={62–70} }","chicago":"Friehs, Maximilian A., Iris Güldenpenning, Christian Frings, and Matthias Weigelt. “Electrify Your Game! Anodal TDCS Increases the Resistance to Head Fakes in Basketball.” Journal of Cognitive Enhancement 4, no. 1 (2020): 62–70. https://doi.org/10.1007/s41465-019-00133-8.","apa":"Friehs, M. A., Güldenpenning, I., Frings, C., & Weigelt, M. 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Weigelt, Journal of Cognitive Enhancement 4 (2020) 62–70."},"type":"journal_article","year":"2020","page":"62-70","intvolume":" 4","_id":"37827","issue":"1","department":[{"_id":"266"},{"_id":"17"}],"publication_identifier":{"issn":["2509-3290","2509-3304"]},"publication_status":"published","title":"Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball","language":[{"iso":"eng"}],"date_updated":"2023-09-05T11:57:48Z","doi":"10.1007/s41465-019-00133-8"},{"page":"62–70","year":"2020","citation":{"mla":"Friehs, Maximilian A., et al. “Electrify Your Game! Anodal TDCS Increases the Resistance to Head Fakes in Basketball.” Journal of Cognitive Enhancement, vol. 4, Springer, 2020, pp. 62–70.","bibtex":"@article{Friehs_Güldenpenning_Frings_Weigelt_2020, title={Electrify your game! Anodal tDCS increases the resistance to head fakes in basketball}, volume={4}, journal={Journal of Cognitive Enhancement}, publisher={Springer}, author={Friehs, Maximilian A and Güldenpenning, Iris and Frings, Christian and Weigelt, Matthias}, year={2020}, pages={62–70} }","chicago":"Friehs, Maximilian A, Iris Güldenpenning, Christian Frings, and Matthias Weigelt. “Electrify Your Game! Anodal TDCS Increases the Resistance to Head Fakes in Basketball.” Journal of Cognitive Enhancement 4 (2020): 62–70.","ama":"Friehs MA, Güldenpenning I, Frings C, Weigelt M. Electrify your game! Anodal tDCS increases the resistance to head fakes in basketball. Journal of Cognitive Enhancement. 2020;4:62–70.","apa":"Friehs, M. A., Güldenpenning, I., Frings, C., & Weigelt, M. (2020). Electrify your game! Anodal tDCS increases the resistance to head fakes in basketball. Journal of Cognitive Enhancement, 4, 62–70.","ieee":"M. A. Friehs, I. Güldenpenning, C. Frings, and M. Weigelt, “Electrify your game! Anodal tDCS increases the resistance to head fakes in basketball,” Journal of Cognitive Enhancement, vol. 4, pp. 62–70, 2020.","short":"M.A. Friehs, I. Güldenpenning, C. Frings, M. Weigelt, Journal of Cognitive Enhancement 4 (2020) 62–70."},"type":"journal_article","date_updated":"2023-09-18T13:15:42Z","_id":"46726","intvolume":" 4","date_created":"2023-08-25T13:48:21Z","status":"public","volume":4,"publication":"Journal of Cognitive Enhancement","author":[{"last_name":"Friehs","full_name":"Friehs, Maximilian A","first_name":"Maximilian A"},{"full_name":"Güldenpenning, Iris","first_name":"Iris","last_name":"Güldenpenning"},{"full_name":"Frings, Christian","first_name":"Christian","last_name":"Frings"},{"first_name":"Matthias","full_name":"Weigelt, Matthias","last_name":"Weigelt"}],"publisher":"Springer","user_id":"80673","title":"Electrify your game! Anodal tDCS increases the resistance to head fakes in basketball"},{"place":"Lengerich","user_id":"52931","title":"Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball in basketball","quality_controlled":"1","publisher":"Pabst Science Publishers","author":[{"first_name":"M.","full_name":"Friehs, M.","last_name":"Friehs"},{"full_name":"Güldenpenning, Iris","orcid":"0000-0003-0549-5543","first_name":"Iris","id":"52931","last_name":"Güldenpenning"},{"full_name":"Frings, C.","first_name":"C.","last_name":"Frings"},{"last_name":"Weigelt","id":"36388","first_name":"Matthias","full_name":"Weigelt, Matthias"}],"publication":"Abstracts of the 62nd Conference of Experimental Psychologists (TeaP)","department":[{"_id":"266"},{"_id":"17"}],"status":"public","date_created":"2023-09-13T11:48:11Z","editor":[{"full_name":"Dobel, C.","first_name":"C.","last_name":"Dobel"},{"full_name":"Giesen, C.","first_name":"C.","last_name":"Giesen"},{"first_name":"L. A.","full_name":"Grigutsch, L. A.","last_name":"Grigutsch"},{"last_name":"Kaufmann","full_name":"Kaufmann, J. M.","first_name":"J. M."},{"first_name":"G.","full_name":"Kovács, G.","last_name":"Kovács"},{"last_name":"Meissner","full_name":"Meissner, F.","first_name":"F."},{"last_name":"Rothermund","full_name":"Rothermund, K.","first_name":"K."},{"full_name":"Schweinberger, S. R.","first_name":"S. R.","last_name":"Schweinberger"}],"publication_status":"published","date_updated":"2023-09-19T15:36:46Z","_id":"47015","conference":{"location":"Jena","name":"Abstracts of the 62nd Conference of Experimental Psychologists (TeaP)"},"language":[{"iso":"eng"}],"type":"conference_abstract","year":"2020","citation":{"ama":"Friehs M, Güldenpenning I, Frings C, Weigelt M. Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball in basketball. In: Dobel C, Giesen C, Grigutsch LA, et al., eds. Abstracts of the 62nd Conference of Experimental Psychologists (TeaP). Pabst Science Publishers; 2020:69.","apa":"Friehs, M., Güldenpenning, I., Frings, C., & Weigelt, M. (2020). Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball in basketball. In C. Dobel, C. Giesen, L. A. Grigutsch, J. M. Kaufmann, G. Kovács, F. Meissner, K. Rothermund, & S. R. Schweinberger (Eds.), Abstracts of the 62nd Conference of Experimental Psychologists (TeaP) (p. 69). Pabst Science Publishers.","chicago":"Friehs, M., Iris Güldenpenning, C. Frings, and Matthias Weigelt. “Electrify Your Game! Anodal TDCS Increases the Resistance to Head Fakes in Basketball in Basketball.” In Abstracts of the 62nd Conference of Experimental Psychologists (TeaP), edited by C. Dobel, C. Giesen, L. A. Grigutsch, J. M. Kaufmann, G. Kovács, F. Meissner, K. Rothermund, and S. R. Schweinberger, 69. Lengerich: Pabst Science Publishers, 2020.","bibtex":"@inproceedings{Friehs_Güldenpenning_Frings_Weigelt_2020, place={Lengerich}, title={Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball in basketball}, booktitle={Abstracts of the 62nd Conference of Experimental Psychologists (TeaP)}, publisher={Pabst Science Publishers}, author={Friehs, M. and Güldenpenning, Iris and Frings, C. and Weigelt, Matthias}, editor={Dobel, C. and Giesen, C. and Grigutsch, L. A. and Kaufmann, J. M. and Kovács, G. and Meissner, F. and Rothermund, K. and Schweinberger, S. R.}, year={2020}, pages={69} }","mla":"Friehs, M., et al. “Electrify Your Game! Anodal TDCS Increases the Resistance to Head Fakes in Basketball in Basketball.” Abstracts of the 62nd Conference of Experimental Psychologists (TeaP), edited by C. Dobel et al., Pabst Science Publishers, 2020, p. 69.","short":"M. Friehs, I. Güldenpenning, C. Frings, M. Weigelt, in: C. Dobel, C. Giesen, L.A. Grigutsch, J.M. Kaufmann, G. Kovács, F. Meissner, K. Rothermund, S.R. Schweinberger (Eds.), Abstracts of the 62nd Conference of Experimental Psychologists (TeaP), Pabst Science Publishers, Lengerich, 2020, p. 69.","ieee":"M. Friehs, I. Güldenpenning, C. Frings, and M. Weigelt, “Electrify your Game! Anodal tDCS Increases the Resistance to Head Fakes in Basketball in basketball,” in Abstracts of the 62nd Conference of Experimental Psychologists (TeaP), Jena, 2020, p. 69."},"page":"69"},{"department":[{"_id":"304"}],"project":[{"name":"Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"}],"title":"Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:54:50Z","doi":"10.1021/acsaem.0c01740","author":[{"full_name":"Sahoo, Sudhir K.","first_name":"Sudhir K.","last_name":"Sahoo"},{"first_name":"Julian Joachim","full_name":"Heske, Julian Joachim","last_name":"Heske","id":"53238"},{"last_name":"Antonietti","full_name":"Antonietti, Markus","first_name":"Markus"},{"last_name":"Qin","full_name":"Qin, Qing","first_name":"Qing"},{"full_name":"Oschatz, Martin","first_name":"Martin","last_name":"Oschatz"},{"last_name":"Kühne","id":"49079","first_name":"Thomas","full_name":"Kühne, Thomas"}],"publisher":"American Chemical Society","publication":"ACS Applied Energy Materials","status":"public","date_created":"2021-02-16T10:49:02Z","volume":3,"abstract":[{"text":"The electrochemical nitrogen reduction reaction (NRR) to ammonia (NH3) is a promising alternative route for an NH3 synthesis at ambient conditions to the conventional high temperature and pressure Haber--Bosch process without the need for hydrogen gas. Single metal ions or atoms are attractive candidates for the catalytic activation of non-reactive nitrogen (N2), and for future targeted improvement of NRR catalysts, it is of utmost importance to get detailed insights into structure-performance relationships and mechanisms of N2 activation in such structures. Here, we report density functional theory studies on the NRR catalyzed by single Au and Fe atoms supported in graphitic C2N materials. Our results show that the metal atoms present in the structure of C2N are the reactive sites, which catalyze the aforesaid reaction by strong adsorption and activation of N2. We further demonstrate that a lower onset electrode potential is required for Fe--C2N than for Au--C2N. Thus, Fe--C2N is theoretically predicted to be a potentially better NRR catalyst at ambient conditions than Au--C2N owing to the larger adsorption energy of N2 molecules. Furthermore, we have experimentally shown that single sites of Au and Fe supported on nitrogen-doped porous carbon are indeed active NRR catalysts. However, in contrast to our theoretical results, the Au-based catalyst performed slightly better with a Faradaic efficiency (FE) of 10.1{\\%} than the Fe-based catalyst with an FE of 8.4{\\%} at −0.2 V vs. RHE. The DFT calculations suggest that this difference is due to the competitive hydrogen evolution reaction and higher desorption energy of ammonia.","lang":"eng"}],"user_id":"71692","year":"2020","type":"journal_article","citation":{"bibtex":"@article{Sahoo_Heske_Antonietti_Qin_Oschatz_Kühne_2020, title={Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon}, volume={3}, DOI={10.1021/acsaem.0c01740}, number={10}, journal={ACS Applied Energy Materials}, publisher={American Chemical Society}, author={Sahoo, Sudhir K. and Heske, Julian Joachim and Antonietti, Markus and Qin, Qing and Oschatz, Martin and Kühne, Thomas}, year={2020}, pages={10061–10069} }","mla":"Sahoo, Sudhir K., et al. “Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon.” ACS Applied Energy Materials, vol. 3, no. 10, American Chemical Society, 2020, pp. 10061–69, doi:10.1021/acsaem.0c01740.","chicago":"Sahoo, Sudhir K., Julian Joachim Heske, Markus Antonietti, Qing Qin, Martin Oschatz, and Thomas Kühne. “Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon.” ACS Applied Energy Materials 3, no. 10 (2020): 10061–69. https://doi.org/10.1021/acsaem.0c01740.","ama":"Sahoo SK, Heske JJ, Antonietti M, Qin Q, Oschatz M, Kühne T. Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon. ACS Applied Energy Materials. 2020;3(10):10061-10069. doi:10.1021/acsaem.0c01740","apa":"Sahoo, S. K., Heske, J. J., Antonietti, M., Qin, Q., Oschatz, M., & Kühne, T. (2020). Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon. ACS Applied Energy Materials, 3(10), 10061–10069. https://doi.org/10.1021/acsaem.0c01740","ieee":"S. K. Sahoo, J. J. Heske, M. Antonietti, Q. Qin, M. Oschatz, and T. Kühne, “Electrochemical N2 Reduction to Ammonia Using Single Au/Fe Atoms Supported on Nitrogen-Doped Porous Carbon,” ACS Applied Energy Materials, vol. 3, no. 10, pp. 10061–10069, 2020.","short":"S.K. Sahoo, J.J. Heske, M. Antonietti, Q. Qin, M. Oschatz, T. Kühne, ACS Applied Energy Materials 3 (2020) 10061–10069."},"page":"10061-10069","_id":"21239","intvolume":" 3","issue":"10"},{"external_id":{"pmid":["31957903"]},"title":"Electrocortical dynamics differentiate athletes exhibiting low- and high- ACL injury risk biomechanics.","department":[{"_id":"17"},{"_id":"172"}],"publication_identifier":{"issn":["0048-5772","1540-5958"]},"date_updated":"2022-01-06T06:52:50Z","doi":"10.1111/psyp.13530","language":[{"iso":"eng"}],"user_id":"62406","publication":"Psychophysiology","author":[{"full_name":"Bonnette, S","first_name":"S","last_name":"Bonnette"},{"first_name":"JA","full_name":"Diekfuss, JA","last_name":"Diekfuss"},{"full_name":"Grooms, DR","first_name":"DR","last_name":"Grooms"},{"last_name":"Kiefer","first_name":"AW","full_name":"Kiefer, AW"},{"last_name":"Riley","first_name":"MA","full_name":"Riley, MA"},{"last_name":"Riehm","first_name":"C","full_name":"Riehm, C"},{"first_name":"C","full_name":"Moore, C","last_name":"Moore"},{"first_name":"KD","full_name":"Barber Foss, KD","last_name":"Barber Foss"},{"last_name":"DiCesare","full_name":"DiCesare, CA","first_name":"CA"},{"first_name":"Jochen","full_name":"Baumeister, Jochen","orcid":"0000-0003-2683-5826","last_name":"Baumeister","id":"46"},{"last_name":"Myer","first_name":"GD","full_name":"Myer, GD"}],"date_created":"2020-04-07T13:54:52Z","status":"public","volume":57,"_id":"16458","intvolume":" 57","issue":"4","pmid":"1","page":"e13530","type":"journal_article","year":"2020","citation":{"chicago":"Bonnette, S, JA Diekfuss, DR Grooms, AW Kiefer, MA Riley, C Riehm, C Moore, et al. “Electrocortical Dynamics Differentiate Athletes Exhibiting Low- and High- ACL Injury Risk Biomechanics.” Psychophysiology 57, no. 4 (2020): e13530. https://doi.org/10.1111/psyp.13530.","apa":"Bonnette, S., Diekfuss, J., Grooms, D., Kiefer, A., Riley, M., Riehm, C., … Myer, G. (2020). Electrocortical dynamics differentiate athletes exhibiting low- and high- ACL injury risk biomechanics. Psychophysiology, 57(4), e13530. https://doi.org/10.1111/psyp.13530","ama":"Bonnette S, Diekfuss J, Grooms D, et al. Electrocortical dynamics differentiate athletes exhibiting low- and high- ACL injury risk biomechanics. Psychophysiology. 2020;57(4):e13530. doi:10.1111/psyp.13530","bibtex":"@article{Bonnette_Diekfuss_Grooms_Kiefer_Riley_Riehm_Moore_Barber Foss_DiCesare_Baumeister_et al._2020, title={Electrocortical dynamics differentiate athletes exhibiting low- and high- ACL injury risk biomechanics.}, volume={57}, DOI={10.1111/psyp.13530}, number={4}, journal={Psychophysiology}, author={Bonnette, S and Diekfuss, JA and Grooms, DR and Kiefer, AW and Riley, MA and Riehm, C and Moore, C and Barber Foss, KD and DiCesare, CA and Baumeister, Jochen and et al.}, year={2020}, pages={e13530} }","mla":"Bonnette, S., et al. “Electrocortical Dynamics Differentiate Athletes Exhibiting Low- and High- ACL Injury Risk Biomechanics.” Psychophysiology, vol. 57, no. 4, 2020, p. e13530, doi:10.1111/psyp.13530.","short":"S. Bonnette, J. Diekfuss, D. Grooms, A. Kiefer, M. Riley, C. Riehm, C. Moore, K. Barber Foss, C. DiCesare, J. Baumeister, G. Myer, Psychophysiology 57 (2020) e13530.","ieee":"S. Bonnette et al., “Electrocortical dynamics differentiate athletes exhibiting low- and high- ACL injury risk biomechanics.,” Psychophysiology, vol. 57, no. 4, p. e13530, 2020."}},{"date_updated":"2023-04-20T16:08:56Z","doi":"10.1039/d0cp01612h","language":[{"iso":"eng"}],"title":"Electron paramagnetic resonance study of ferroelectric phase transition and dynamic effects in a Mn2+ doped [NH4][Zn(HCOO)3] hybrid formate framework","department":[{"_id":"15"},{"_id":"170"},{"_id":"295"},{"_id":"230"},{"_id":"35"},{"_id":"790"}],"project":[{"name":"Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"},{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"publication_status":"published","publication_identifier":{"issn":["1463-9076","1463-9084"]},"intvolume":" 22","_id":"17070","page":"8513-8521","year":"2020","type":"journal_article","citation":{"ieee":"M. Navickas et al., “Electron paramagnetic resonance study of ferroelectric phase transition and dynamic effects in a Mn2+ doped [NH4][Zn(HCOO)3] hybrid formate framework,” Physical Chemistry Chemical Physics, vol. 22, pp. 8513–8521, 2020, doi: 10.1039/d0cp01612h.","short":"M. Navickas, L. Giriūnas, V. Kalendra, T. Biktagirov, U. Gerstmann, W.G. Schmidt, M. Mączka, A. Pöppl, J. Banys, M. Šimėnas, Physical Chemistry Chemical Physics 22 (2020) 8513–8521.","bibtex":"@article{Navickas_Giriūnas_Kalendra_Biktagirov_Gerstmann_Schmidt_Mączka_Pöppl_Banys_Šimėnas_2020, title={Electron paramagnetic resonance study of ferroelectric phase transition and dynamic effects in a Mn2+ doped [NH4][Zn(HCOO)3] hybrid formate framework}, volume={22}, DOI={10.1039/d0cp01612h}, journal={Physical Chemistry Chemical Physics}, author={Navickas, Marius and Giriūnas, Laisvydas and Kalendra, Vidmantas and Biktagirov, Timur and Gerstmann, Uwe and Schmidt, Wolf Gero and Mączka, Mirosław and Pöppl, Andreas and Banys, Jūras and Šimėnas, Mantas}, year={2020}, pages={8513–8521} }","mla":"Navickas, Marius, et al. “Electron Paramagnetic Resonance Study of Ferroelectric Phase Transition and Dynamic Effects in a Mn2+ Doped [NH4][Zn(HCOO)3] Hybrid Formate Framework.” Physical Chemistry Chemical Physics, vol. 22, 2020, pp. 8513–21, doi:10.1039/d0cp01612h.","chicago":"Navickas, Marius, Laisvydas Giriūnas, Vidmantas Kalendra, Timur Biktagirov, Uwe Gerstmann, Wolf Gero Schmidt, Mirosław Mączka, Andreas Pöppl, Jūras Banys, and Mantas Šimėnas. “Electron Paramagnetic Resonance Study of Ferroelectric Phase Transition and Dynamic Effects in a Mn2+ Doped [NH4][Zn(HCOO)3] Hybrid Formate Framework.” Physical Chemistry Chemical Physics 22 (2020): 8513–21. https://doi.org/10.1039/d0cp01612h.","apa":"Navickas, M., Giriūnas, L., Kalendra, V., Biktagirov, T., Gerstmann, U., Schmidt, W. G., Mączka, M., Pöppl, A., Banys, J., & Šimėnas, M. (2020). Electron paramagnetic resonance study of ferroelectric phase transition and dynamic effects in a Mn2+ doped [NH4][Zn(HCOO)3] hybrid formate framework. Physical Chemistry Chemical Physics, 22, 8513–8521. https://doi.org/10.1039/d0cp01612h","ama":"Navickas M, Giriūnas L, Kalendra V, et al. Electron paramagnetic resonance study of ferroelectric phase transition and dynamic effects in a Mn2+ doped [NH4][Zn(HCOO)3] hybrid formate framework. Physical Chemistry Chemical Physics. 2020;22:8513-8521. doi:10.1039/d0cp01612h"},"abstract":[{"text":"
EPR spectroscopy reveals the universality class and dynamic effects of the [NH4][Zn(HCOO)3] hybrid formate framework.
","lang":"eng"}],"user_id":"16199","publication":"Physical Chemistry Chemical Physics","author":[{"last_name":"Navickas","full_name":"Navickas, Marius","first_name":"Marius"},{"last_name":"Giriūnas","first_name":"Laisvydas","full_name":"Giriūnas, Laisvydas"},{"full_name":"Kalendra, Vidmantas","first_name":"Vidmantas","last_name":"Kalendra"},{"first_name":"Timur","full_name":"Biktagirov, Timur","last_name":"Biktagirov","id":"65612"},{"full_name":"Gerstmann, Uwe","orcid":"0000-0002-4476-223X","first_name":"Uwe","id":"171","last_name":"Gerstmann"},{"id":"468","last_name":"Schmidt","full_name":"Schmidt, Wolf Gero","orcid":"0000-0002-2717-5076","first_name":"Wolf Gero"},{"last_name":"Mączka","first_name":"Mirosław","full_name":"Mączka, Mirosław"},{"last_name":"Pöppl","full_name":"Pöppl, Andreas","first_name":"Andreas"},{"full_name":"Banys, Jūras","first_name":"Jūras","last_name":"Banys"},{"last_name":"Šimėnas","full_name":"Šimėnas, Mantas","first_name":"Mantas"}],"date_created":"2020-05-29T09:59:15Z","status":"public","volume":22},{"date_created":"2020-03-23T10:38:47Z","project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"status":"public","publication_identifier":{"issn":["0020-1669","1520-510X"]},"publication_status":"published","publication":"Inorganic Chemistry","department":[{"_id":"43"},{"_id":"35"},{"_id":"306"}],"author":[{"first_name":"Lukas","orcid":"0000-0003-0747-9811","full_name":"Burkhardt, Lukas","last_name":"Burkhardt","id":"54038"},{"last_name":"Vukadinovic","first_name":"Yannik","full_name":"Vukadinovic, Yannik"},{"full_name":"Nowakowski, Michał","first_name":"Michał","last_name":"Nowakowski"},{"last_name":"Kalinko","full_name":"Kalinko, Aleksandr","first_name":"Aleksandr"},{"full_name":"Rudolph, Julian","first_name":"Julian","last_name":"Rudolph"},{"first_name":"Per-Anders","full_name":"Carlsson, Per-Anders","last_name":"Carlsson"},{"last_name":"Jacob","full_name":"Jacob, Christoph R.","first_name":"Christoph R."},{"full_name":"Bauer, Matthias","first_name":"Matthias","id":"47241","last_name":"Bauer"}],"user_id":"54038","title":"Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy","language":[{"iso":"eng"}],"page":"3551-3561","year":"2020","citation":{"ama":"Burkhardt L, Vukadinovic Y, Nowakowski M, et al. Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy. Inorganic Chemistry. 2020:3551-3561. doi:10.1021/acs.inorgchem.9b02092","apa":"Burkhardt, L., Vukadinovic, Y., Nowakowski, M., Kalinko, A., Rudolph, J., Carlsson, P.-A., … Bauer, M. (2020). Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy. Inorganic Chemistry, 3551–3561. https://doi.org/10.1021/acs.inorgchem.9b02092","chicago":"Burkhardt, Lukas, Yannik Vukadinovic, Michał Nowakowski, Aleksandr Kalinko, Julian Rudolph, Per-Anders Carlsson, Christoph R. Jacob, and Matthias Bauer. “Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-Ray Emission and Absorption Spectroscopy.” Inorganic Chemistry, 2020, 3551–61. https://doi.org/10.1021/acs.inorgchem.9b02092.","mla":"Burkhardt, Lukas, et al. “Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-Ray Emission and Absorption Spectroscopy.” Inorganic Chemistry, 2020, pp. 3551–61, doi:10.1021/acs.inorgchem.9b02092.","bibtex":"@article{Burkhardt_Vukadinovic_Nowakowski_Kalinko_Rudolph_Carlsson_Jacob_Bauer_2020, title={Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy}, DOI={10.1021/acs.inorgchem.9b02092}, journal={Inorganic Chemistry}, author={Burkhardt, Lukas and Vukadinovic, Yannik and Nowakowski, Michał and Kalinko, Aleksandr and Rudolph, Julian and Carlsson, Per-Anders and Jacob, Christoph R. and Bauer, Matthias}, year={2020}, pages={3551–3561} }","short":"L. Burkhardt, Y. Vukadinovic, M. Nowakowski, A. Kalinko, J. Rudolph, P.-A. Carlsson, C.R. Jacob, M. Bauer, Inorganic Chemistry (2020) 3551–3561.","ieee":"L. Burkhardt et al., “Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy,” Inorganic Chemistry, pp. 3551–3561, 2020."},"type":"journal_article","doi":"10.1021/acs.inorgchem.9b02092","date_updated":"2022-01-06T06:52:48Z","_id":"16311"},{"page":"3551-3561","type":"journal_article","citation":{"ieee":"L. Burkhardt et al., “Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy,” Inorganic Chemistry, vol. 59, no. 6, pp. 3551–3561, 2020, doi: 10.1021/acs.inorgchem.9b02092.","short":"L. Burkhardt, Y. Vukadinovic, M. Nowakowski, A. Kalinko, J. Rudolph, P.-A. Carlsson, C.R. Jacob, M. Bauer, Inorganic Chemistry 59 (2020) 3551–3561.","mla":"Burkhardt, Lukas, et al. “Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-Ray Emission and Absorption Spectroscopy.” Inorganic Chemistry, vol. 59, no. 6, American Chemical Society (ACS), 2020, pp. 3551–61, doi:10.1021/acs.inorgchem.9b02092.","bibtex":"@article{Burkhardt_Vukadinovic_Nowakowski_Kalinko_Rudolph_Carlsson_Jacob_Bauer_2020, title={Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy}, volume={59}, DOI={10.1021/acs.inorgchem.9b02092}, number={6}, journal={Inorganic Chemistry}, publisher={American Chemical Society (ACS)}, author={Burkhardt, Lukas and Vukadinovic, Yannik and Nowakowski, Michał and Kalinko, Aleksandr and Rudolph, Julian and Carlsson, Per-Anders and Jacob, Christoph R. and Bauer, Matthias}, year={2020}, pages={3551–3561} }","chicago":"Burkhardt, Lukas, Yannik Vukadinovic, Michał Nowakowski, Aleksandr Kalinko, Julian Rudolph, Per-Anders Carlsson, Christoph R. Jacob, and Matthias Bauer. “Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-Ray Emission and Absorption Spectroscopy.” Inorganic Chemistry 59, no. 6 (2020): 3551–61. https://doi.org/10.1021/acs.inorgchem.9b02092.","apa":"Burkhardt, L., Vukadinovic, Y., Nowakowski, M., Kalinko, A., Rudolph, J., Carlsson, P.-A., Jacob, C. R., & Bauer, M. (2020). Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy. Inorganic Chemistry, 59(6), 3551–3561. https://doi.org/10.1021/acs.inorgchem.9b02092","ama":"Burkhardt L, Vukadinovic Y, Nowakowski M, et al. Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy. Inorganic Chemistry. 2020;59(6):3551-3561. doi:10.1021/acs.inorgchem.9b02092"},"year":"2020","intvolume":" 59","_id":"41330","issue":"6","keyword":["Inorganic Chemistry","Physical and Theoretical Chemistry"],"publication":"Inorganic Chemistry","author":[{"full_name":"Burkhardt, Lukas","first_name":"Lukas","last_name":"Burkhardt"},{"first_name":"Yannik","full_name":"Vukadinovic, Yannik","last_name":"Vukadinovic"},{"last_name":"Nowakowski","full_name":"Nowakowski, Michał","first_name":"Michał"},{"last_name":"Kalinko","full_name":"Kalinko, Aleksandr","first_name":"Aleksandr"},{"last_name":"Rudolph","full_name":"Rudolph, Julian","first_name":"Julian"},{"last_name":"Carlsson","first_name":"Per-Anders","full_name":"Carlsson, Per-Anders"},{"last_name":"Jacob","full_name":"Jacob, Christoph R.","first_name":"Christoph R."},{"first_name":"Matthias","full_name":"Bauer, Matthias","last_name":"Bauer"}],"publisher":"American Chemical Society (ACS)","volume":59,"date_created":"2023-01-31T22:52:57Z","status":"public","user_id":"78878","language":[{"iso":"eng"}],"date_updated":"2023-02-01T08:50:38Z","doi":"10.1021/acs.inorgchem.9b02092","publication_identifier":{"issn":["0020-1669","1520-510X"]},"publication_status":"published","title":"Electronic Structure of the Hieber Anion [Fe(CO)3(NO)]− Revisited by X-ray Emission and Absorption Spectroscopy"},{"publication_status":"published","publication_identifier":{"issn":["2469-9950","2469-9969"]},"status":"public","date_created":"2020-07-29T08:27:47Z","author":[{"last_name":"Geier","full_name":"Geier, M.","first_name":"M."},{"last_name":"Freudenfeld","full_name":"Freudenfeld, J.","first_name":"J."},{"last_name":"Silva","full_name":"Silva, J. T.","first_name":"J. T."},{"last_name":"Umansky","full_name":"Umansky, V.","first_name":"V."},{"id":"37763","last_name":"Reuter","full_name":"Reuter, Dirk","first_name":"Dirk"},{"last_name":"Wieck","full_name":"Wieck, A. D.","first_name":"A. D."},{"last_name":"Brouwer","first_name":"P. W.","full_name":"Brouwer, P. W."},{"last_name":"Ludwig","first_name":"S.","full_name":"Ludwig, S."}],"publication":"Physical Review B","department":[{"_id":"15"},{"_id":"230"}],"title":"Electrostatic potential shape of gate-defined quantum point contacts","user_id":"42514","type":"journal_article","citation":{"mla":"Geier, M., et al. “Electrostatic Potential Shape of Gate-Defined Quantum Point Contacts.” Physical Review B, 2020, doi:10.1103/physrevb.101.165429.","bibtex":"@article{Geier_Freudenfeld_Silva_Umansky_Reuter_Wieck_Brouwer_Ludwig_2020, title={Electrostatic potential shape of gate-defined quantum point contacts}, DOI={10.1103/physrevb.101.165429}, journal={Physical Review B}, author={Geier, M. and Freudenfeld, J. and Silva, J. T. and Umansky, V. and Reuter, Dirk and Wieck, A. D. and Brouwer, P. W. and Ludwig, S.}, year={2020} }","chicago":"Geier, M., J. Freudenfeld, J. T. Silva, V. Umansky, Dirk Reuter, A. D. Wieck, P. W. Brouwer, and S. Ludwig. “Electrostatic Potential Shape of Gate-Defined Quantum Point Contacts.” Physical Review B, 2020. https://doi.org/10.1103/physrevb.101.165429.","apa":"Geier, M., Freudenfeld, J., Silva, J. T., Umansky, V., Reuter, D., Wieck, A. D., … Ludwig, S. (2020). Electrostatic potential shape of gate-defined quantum point contacts. Physical Review B. https://doi.org/10.1103/physrevb.101.165429","ama":"Geier M, Freudenfeld J, Silva JT, et al. Electrostatic potential shape of gate-defined quantum point contacts. Physical Review B. 2020. doi:10.1103/physrevb.101.165429","ieee":"M. Geier et al., “Electrostatic potential shape of gate-defined quantum point contacts,” Physical Review B, 2020.","short":"M. Geier, J. Freudenfeld, J.T. Silva, V. Umansky, D. Reuter, A.D. Wieck, P.W. Brouwer, S. Ludwig, Physical Review B (2020)."},"year":"2020","language":[{"iso":"eng"}],"doi":"10.1103/physrevb.101.165429","_id":"17435","date_updated":"2022-01-06T06:53:12Z"},{"date_updated":"2022-01-06T12:32:47Z","doi":"10.4229/EUPVSEC20202020-4AV.3.6","language":[{"iso":"eng"}],"title":"Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters","department":[{"_id":"53"}],"publication_status":"published","publication_identifier":{"issn":["3-936338-73-6"]},"conference":{"location":"online","name":"EU PVSEC 2020, 37th EU Photovoltaik Solar Energy Conference","start_date":"2020-09-07","end_date":"2020-09-11"},"_id":"18387","page":"1179 - 1180","type":"conference","citation":{"short":"S. Krauter, J. Bendfeld, in: Proceedings of the EU PVSEC 2020 , 2020, pp. 1179–1180.","ieee":"S. Krauter and J. Bendfeld, “Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters,” in Proceedings of the EU PVSEC 2020 , online, 2020, pp. 1179–1180, doi: 10.4229/EUPVSEC20202020-4AV.3.6.","ama":"Krauter S, Bendfeld J. Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters. In: Proceedings of the EU PVSEC 2020 . ; 2020:1179-1180. doi:10.4229/EUPVSEC20202020-4AV.3.6","apa":"Krauter, S., & Bendfeld, J. (2020). Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters. Proceedings of the EU PVSEC 2020 , 1179–1180. https://doi.org/10.4229/EUPVSEC20202020-4AV.3.6","chicago":"Krauter, Stefan, and Jörg Bendfeld. “Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters.” In Proceedings of the EU PVSEC 2020 , 1179–80, 2020. https://doi.org/10.4229/EUPVSEC20202020-4AV.3.6.","bibtex":"@inproceedings{Krauter_Bendfeld_2020, title={Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters}, DOI={10.4229/EUPVSEC20202020-4AV.3.6}, booktitle={Proceedings of the EU PVSEC 2020 }, author={Krauter, Stefan and Bendfeld, Jörg}, year={2020}, pages={1179–1180} }","mla":"Krauter, Stefan, and Jörg Bendfeld. “Elevated Temperatures Affecting Efficiency, Overall Performance and Energy Yield of PV Microinverters.” Proceedings of the EU PVSEC 2020 , 2020, pp. 1179–80, doi:10.4229/EUPVSEC20202020-4AV.3.6."},"year":"2020","abstract":[{"lang":"eng","text":" During comparative measurements of different PV microinverters, two yield issues came up that could \r\nnot be explored via conventional efficiency measurements, but do have a significant impact on electrical energy \r\nyield: First category of issues are either sluggish or nervously acting maximum–power–point–tracking devices, which \r\nlead to reduced energy yields. The other category of issues is thermal: As a first explanation for observed reduced \r\nenergy yields, it has been assumed that the conversion efficiency degrades at higher operating temperatures. This \r\nmatter has been investigated in this article: A change in conversion efficiency could not be observed for elevated \r\noperation temperatures up to 50°C, despite high-precision and repeated measurements. But it was found that some \r\ninverters temporarily interrupted (or entirely stopped) operation after long periods of running at high temperatures. \r\nAlso, a reduction in potential maximum power output has been detected for those inverters. Summarizing: With a \r\nhigh degree of certainty it can be stated that those reported yield losses have been caused by the temporary shutdowns \r\nand power limitations of the inverters."}],"user_id":"28836","ddc":["620"],"file":[{"file_id":"29171","creator":"krauter","file_size":599660,"success":1,"relation":"main_file","content_type":"application/pdf","date_updated":"2022-01-06T12:27:02Z","date_created":"2022-01-06T12:27:02Z","file_name":"Krauter Bendfeld - Microinverters at elevated temperatures EUPVSEC 2020.pdf","access_level":"closed"}],"publication":"Proceedings of the EU PVSEC 2020 ","keyword":["AC-modules","Microinverter","Power Conditioning","Thermal Performance","Ventilation","Stability","Efficiency","Yield"],"file_date_updated":"2022-01-06T12:27:02Z","quality_controlled":"1","author":[{"orcid":"0000-0002-3594-260X","full_name":"Krauter, Stefan","first_name":"Stefan","id":"28836","last_name":"Krauter"},{"first_name":"Jörg","full_name":"Bendfeld, Jörg","last_name":"Bendfeld","id":"16148"}],"date_created":"2020-08-27T06:26:25Z","has_accepted_license":"1","status":"public","jel":["Q42"]},{"title":"Embedding care robots into society and practice: Socio-technical considerations","user_id":"49071","article_type":"original","publication_status":"published","volume":122,"date_created":"2020-08-12T11:24:55Z","project":[{"grant_number":"16SV7954","name":"Use of care robots in welfare services: New models for effective orientation","_id":"46"}],"status":"public","department":[{"_id":"178"}],"publication":"Futures","author":[{"last_name":"Pekkarinen","first_name":"Satu","full_name":"Pekkarinen, Satu"},{"last_name":"Hennala","full_name":"Hennala, Lea","first_name":"Lea"},{"first_name":"Outi","full_name":"Tuisku, Outi","last_name":"Tuisku"},{"last_name":"Gustafsson","full_name":"Gustafsson, Christine","first_name":"Christine"},{"last_name":"Johansson-Pajala","full_name":"Johansson-Pajala, Rose-Marie","first_name":"Rose-Marie"},{"first_name":"Kirsten","full_name":"Thommes, Kirsten","last_name":"Thommes","id":"72497"},{"last_name":"Hoppe","id":"73093","first_name":"Julia Amelie","full_name":"Hoppe, Julia Amelie"},{"last_name":"Melkas","full_name":"Melkas, Helina","first_name":"Helina"}],"doi":"https://doi.org/10.1016/j.futures.2020.102593","date_updated":"2022-03-10T15:47:57Z","_id":"17857","intvolume":" 122","type":"journal_article","citation":{"mla":"Pekkarinen, Satu, et al. “Embedding Care Robots into Society and Practice: Socio-Technical Considerations.” Futures, vol. 122, 2020, doi:https://doi.org/10.1016/j.futures.2020.102593.","bibtex":"@article{Pekkarinen_Hennala_Tuisku_Gustafsson_Johansson-Pajala_Thommes_Hoppe_Melkas_2020, title={Embedding care robots into society and practice: Socio-technical considerations}, volume={122}, DOI={https://doi.org/10.1016/j.futures.2020.102593}, journal={Futures}, author={Pekkarinen, Satu and Hennala, Lea and Tuisku, Outi and Gustafsson, Christine and Johansson-Pajala, Rose-Marie and Thommes, Kirsten and Hoppe, Julia Amelie and Melkas, Helina}, year={2020} }","chicago":"Pekkarinen, Satu, Lea Hennala, Outi Tuisku, Christine Gustafsson, Rose-Marie Johansson-Pajala, Kirsten Thommes, Julia Amelie Hoppe, and Helina Melkas. “Embedding Care Robots into Society and Practice: Socio-Technical Considerations.” Futures 122 (2020). https://doi.org/10.1016/j.futures.2020.102593.","ama":"Pekkarinen S, Hennala L, Tuisku O, et al. Embedding care robots into society and practice: Socio-technical considerations. Futures. 2020;122. doi:https://doi.org/10.1016/j.futures.2020.102593","apa":"Pekkarinen, S., Hennala, L., Tuisku, O., Gustafsson, C., Johansson-Pajala, R.-M., Thommes, K., Hoppe, J. A., & Melkas, H. (2020). Embedding care robots into society and practice: Socio-technical considerations. Futures, 122. https://doi.org/10.1016/j.futures.2020.102593","ieee":"S. Pekkarinen et al., “Embedding care robots into society and practice: Socio-technical considerations,” Futures, vol. 122, 2020, doi: https://doi.org/10.1016/j.futures.2020.102593.","short":"S. Pekkarinen, L. Hennala, O. Tuisku, C. Gustafsson, R.-M. Johansson-Pajala, K. Thommes, J.A. Hoppe, H. Melkas, Futures 122 (2020)."},"year":"2020","language":[{"iso":"eng"}]},{"publication":"2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM)","department":[{"_id":"52"}],"author":[{"first_name":"Karl Stephan Christian","full_name":"Stille, Karl Stephan Christian","orcid":"0000-0002-4212-6555","last_name":"Stille","id":"30152"},{"first_name":"Daniel","orcid":"0000-0003-3367-5998","full_name":"Weber, Daniel","last_name":"Weber","id":"24041"},{"first_name":"Jarren","full_name":"Lange, Jarren","last_name":"Lange","id":"78801"},{"last_name":"Vogt","first_name":"Thorsten","full_name":"Vogt, Thorsten"},{"full_name":"Wallscheid, Oliver","orcid":"https://orcid.org/0000-0001-9362-8777","first_name":"Oliver","id":"11291","last_name":"Wallscheid"},{"last_name":"Böcker","id":"66","first_name":"Joachim","orcid":"0000-0002-8480-7295","full_name":"Böcker, Joachim"}],"publisher":"IEEE","date_created":"2022-02-23T09:06:35Z","status":"public","publication_status":"published","user_id":"66","title":"Emulation of Microgrids for Research and Validation of Control and Operation Strategies","language":[{"iso":"eng"}],"year":"2020","citation":{"bibtex":"@inproceedings{Stille_Weber_Lange_Vogt_Wallscheid_Böcker_2020, title={Emulation of Microgrids for Research and Validation of Control and Operation Strategies}, DOI={10.1109/speedam48782.2020.9161971}, booktitle={2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM)}, publisher={IEEE}, author={Stille, Karl Stephan Christian and Weber, Daniel and Lange, Jarren and Vogt, Thorsten and Wallscheid, Oliver and Böcker, Joachim}, year={2020} }","mla":"Stille, Karl Stephan Christian, et al. “Emulation of Microgrids for Research and Validation of Control and Operation Strategies.” 2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), IEEE, 2020, doi:10.1109/speedam48782.2020.9161971.","apa":"Stille, K. S. C., Weber, D., Lange, J., Vogt, T., Wallscheid, O., & Böcker, J. (2020). Emulation of Microgrids for Research and Validation of Control and Operation Strategies. 2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM). SPEEDAM, Sorrent, Italy. https://doi.org/10.1109/speedam48782.2020.9161971","ama":"Stille KSC, Weber D, Lange J, Vogt T, Wallscheid O, Böcker J. Emulation of Microgrids for Research and Validation of Control and Operation Strategies. In: 2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM). IEEE; 2020. doi:10.1109/speedam48782.2020.9161971","chicago":"Stille, Karl Stephan Christian, Daniel Weber, Jarren Lange, Thorsten Vogt, Oliver Wallscheid, and Joachim Böcker. “Emulation of Microgrids for Research and Validation of Control and Operation Strategies.” In 2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM). IEEE, 2020. https://doi.org/10.1109/speedam48782.2020.9161971.","ieee":"K. S. C. Stille, D. Weber, J. Lange, T. Vogt, O. Wallscheid, and J. Böcker, “Emulation of Microgrids for Research and Validation of Control and Operation Strategies,” presented at the SPEEDAM, Sorrent, Italy, 2020, doi: 10.1109/speedam48782.2020.9161971.","short":"K.S.C. Stille, D. Weber, J. Lange, T. Vogt, O. Wallscheid, J. Böcker, in: 2020 International Symposium on Power Electronics, Electrical Drives, Automation and Motion (SPEEDAM), IEEE, 2020."},"type":"conference","conference":{"name":"SPEEDAM","start_date":"2020-06","location":"Sorrent, Italy"},"_id":"29956","date_updated":"2022-02-23T12:49:52Z","doi":"10.1109/speedam48782.2020.9161971"},{"publication":"GECCO '20: Proceedings of the Genetic and Evolutionary Computation Conference Companion","author":[{"id":"49992","last_name":"Hansmeier","full_name":"Hansmeier, Tim","orcid":"0000-0003-1377-3339","first_name":"Tim"},{"last_name":"Kaufmann","first_name":"Paul","full_name":"Kaufmann, Paul"},{"last_name":"Platzner","id":"398","first_name":"Marco","full_name":"Platzner, Marco"}],"publisher":"Association for Computing Machinery (ACM)","date_created":"2020-04-02T10:07:10Z","status":"public","user_id":"477","page":"125-126","citation":{"short":"T. Hansmeier, P. Kaufmann, M. Platzner, in: GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion, Association for Computing Machinery (ACM), New York, NY, United States, 2020, pp. 125–126.","ieee":"T. Hansmeier, P. Kaufmann, and M. Platzner, “Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold,” in GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion, Cancún, Mexico, 2020, pp. 125–126.","chicago":"Hansmeier, Tim, Paul Kaufmann, and Marco Platzner. “Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold.” In GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion, 125–26. New York, NY, United States: Association for Computing Machinery (ACM), 2020. https://doi.org/10.1145/3377929.3389968.","ama":"Hansmeier T, Kaufmann P, Platzner M. Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold. In: GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion. New York, NY, United States: Association for Computing Machinery (ACM); 2020:125-126. doi:10.1145/3377929.3389968","apa":"Hansmeier, T., Kaufmann, P., & Platzner, M. (2020). Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold. In GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion (pp. 125–126). New York, NY, United States: Association for Computing Machinery (ACM). https://doi.org/10.1145/3377929.3389968","bibtex":"@inproceedings{Hansmeier_Kaufmann_Platzner_2020, place={New York, NY, United States}, title={Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold}, DOI={10.1145/3377929.3389968}, booktitle={GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion}, publisher={Association for Computing Machinery (ACM)}, author={Hansmeier, Tim and Kaufmann, Paul and Platzner, Marco}, year={2020}, pages={125–126} }","mla":"Hansmeier, Tim, et al. “Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold.” GECCO ’20: Proceedings of the Genetic and Evolutionary Computation Conference Companion, Association for Computing Machinery (ACM), 2020, pp. 125–26, doi:10.1145/3377929.3389968."},"type":"conference","year":"2020","conference":{"end_date":"2020-07-12","location":"Cancún, Mexico","start_date":"2020-07-08","name":"The Genetic and Evolutionary Computation Conference (GECCO 2020)"},"_id":"16363","department":[{"_id":"78"}],"project":[{"name":"SFB 901 - Project Area C","_id":"4"},{"_id":"1","name":"SFB 901"},{"name":"SFB 901 - Subproject C2","_id":"14"}],"publication_identifier":{"isbn":["978-1-4503-7127-8"]},"publication_status":"published","place":"New York, NY, United States","title":"Enabling XCSF to Cope with Dynamic Environments via an Adaptive Error Threshold","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:52:49Z","doi":"10.1145/3377929.3389968"},{"publication":"2019 IEEE 58th Conference on Decision and Control (CDC)","department":[{"_id":"622"}],"publisher":"IEEE","author":[{"last_name":"Schulze Darup","first_name":"Moritz","full_name":"Schulze Darup, Moritz"},{"last_name":"Jager","full_name":"Jager, Tibor","first_name":"Tibor"}],"date_created":"2023-01-09T16:17:32Z","status":"public","publication_status":"published","user_id":"158","title":"Encrypted Cloud-based Control using Secret Sharing with One-time Pads","language":[{"iso":"eng"}],"year":"2020","citation":{"ieee":"M. Schulze Darup and T. Jager, “Encrypted Cloud-based Control using Secret Sharing with One-time Pads,” 2020, doi: 10.1109/cdc40024.2019.9029342.","short":"M. Schulze Darup, T. Jager, in: 2019 IEEE 58th Conference on Decision and Control (CDC), IEEE, 2020.","bibtex":"@inproceedings{Schulze Darup_Jager_2020, title={Encrypted Cloud-based Control using Secret Sharing with One-time Pads}, DOI={10.1109/cdc40024.2019.9029342}, booktitle={2019 IEEE 58th Conference on Decision and Control (CDC)}, publisher={IEEE}, author={Schulze Darup, Moritz and Jager, Tibor}, year={2020} }","mla":"Schulze Darup, Moritz, and Tibor Jager. “Encrypted Cloud-Based Control Using Secret Sharing with One-Time Pads.” 2019 IEEE 58th Conference on Decision and Control (CDC), IEEE, 2020, doi:10.1109/cdc40024.2019.9029342.","chicago":"Schulze Darup, Moritz, and Tibor Jager. “Encrypted Cloud-Based Control Using Secret Sharing with One-Time Pads.” In 2019 IEEE 58th Conference on Decision and Control (CDC). IEEE, 2020. https://doi.org/10.1109/cdc40024.2019.9029342.","apa":"Schulze Darup, M., & Jager, T. (2020). Encrypted Cloud-based Control using Secret Sharing with One-time Pads. 2019 IEEE 58th Conference on Decision and Control (CDC). https://doi.org/10.1109/cdc40024.2019.9029342","ama":"Schulze Darup M, Jager T. Encrypted Cloud-based Control using Secret Sharing with One-time Pads. In: 2019 IEEE 58th Conference on Decision and Control (CDC). IEEE; 2020. doi:10.1109/cdc40024.2019.9029342"},"type":"conference","date_updated":"2023-01-09T16:18:02Z","_id":"35559","doi":"10.1109/cdc40024.2019.9029342"},{"_id":"35567","date_updated":"2023-01-09T16:23:39Z","doi":"10.1109/cdc40024.2019.9030124","language":[{"iso":"eng"}],"type":"conference","citation":{"short":"A.B. Alexandru, M. Schulze Darup, G.J. Pappas, in: 2019 IEEE 58th Conference on Decision and Control (CDC), IEEE, 2020.","ieee":"A. B. Alexandru, M. Schulze Darup, and G. J. Pappas, “Encrypted Cooperative Control Revisited,” 2020, doi: 10.1109/cdc40024.2019.9030124.","chicago":"Alexandru, Andreea B., Moritz Schulze Darup, and George J. Pappas. “Encrypted Cooperative Control Revisited.” In 2019 IEEE 58th Conference on Decision and Control (CDC). IEEE, 2020. https://doi.org/10.1109/cdc40024.2019.9030124.","ama":"Alexandru AB, Schulze Darup M, Pappas GJ. Encrypted Cooperative Control Revisited. In: 2019 IEEE 58th Conference on Decision and Control (CDC). IEEE; 2020. doi:10.1109/cdc40024.2019.9030124","apa":"Alexandru, A. B., Schulze Darup, M., & Pappas, G. J. (2020). Encrypted Cooperative Control Revisited. 2019 IEEE 58th Conference on Decision and Control (CDC). https://doi.org/10.1109/cdc40024.2019.9030124","mla":"Alexandru, Andreea B., et al. “Encrypted Cooperative Control Revisited.” 2019 IEEE 58th Conference on Decision and Control (CDC), IEEE, 2020, doi:10.1109/cdc40024.2019.9030124.","bibtex":"@inproceedings{Alexandru_Schulze Darup_Pappas_2020, title={Encrypted Cooperative Control Revisited}, DOI={10.1109/cdc40024.2019.9030124}, booktitle={2019 IEEE 58th Conference on Decision and Control (CDC)}, publisher={IEEE}, author={Alexandru, Andreea B. and Schulze Darup, Moritz and Pappas, George J.}, year={2020} }"},"year":"2020","user_id":"158","title":"Encrypted Cooperative Control Revisited","department":[{"_id":"622"}],"publication":"2019 IEEE 58th Conference on Decision and Control (CDC)","publisher":"IEEE","author":[{"full_name":"Alexandru, Andreea B.","first_name":"Andreea B.","last_name":"Alexandru"},{"last_name":"Schulze Darup","full_name":"Schulze Darup, Moritz","first_name":"Moritz"},{"first_name":"George J.","full_name":"Pappas, George J.","last_name":"Pappas"}],"date_created":"2023-01-09T16:23:24Z","status":"public","publication_status":"published"},{"keyword":["Electrical and Electronic Engineering","Industrial and Manufacturing Engineering","Mechanical Engineering","Aerospace Engineering","Biomedical Engineering","General Chemical Engineering","Control and Systems Engineering"],"publication":"International Journal of Robust and Nonlinear Control","publisher":"Wiley","author":[{"full_name":"Schulze Darup, Moritz","first_name":"Moritz","last_name":"Schulze Darup"}],"date_created":"2023-01-09T16:36:47Z","status":"public","volume":30,"user_id":"158","page":"4168-4187","type":"journal_article","year":"2020","citation":{"ieee":"M. Schulze Darup, “Encrypted polynomial control based on tailored two‐party computation,” International Journal of Robust and Nonlinear Control, vol. 30, no. 11, pp. 4168–4187, 2020, doi: 10.1002/rnc.5003.","short":"M. Schulze Darup, International Journal of Robust and Nonlinear Control 30 (2020) 4168–4187.","bibtex":"@article{Schulze Darup_2020, title={Encrypted polynomial control based on tailored two‐party computation}, volume={30}, DOI={10.1002/rnc.5003}, number={11}, journal={International Journal of Robust and Nonlinear Control}, publisher={Wiley}, author={Schulze Darup, Moritz}, year={2020}, pages={4168–4187} }","mla":"Schulze Darup, Moritz. “Encrypted Polynomial Control Based on Tailored Two‐party Computation.” International Journal of Robust and Nonlinear Control, vol. 30, no. 11, Wiley, 2020, pp. 4168–87, doi:10.1002/rnc.5003.","chicago":"Schulze Darup, Moritz. “Encrypted Polynomial Control Based on Tailored Two‐party Computation.” International Journal of Robust and Nonlinear Control 30, no. 11 (2020): 4168–87. https://doi.org/10.1002/rnc.5003.","apa":"Schulze Darup, M. (2020). Encrypted polynomial control based on tailored two‐party computation. International Journal of Robust and Nonlinear Control, 30(11), 4168–4187. https://doi.org/10.1002/rnc.5003","ama":"Schulze Darup M. Encrypted polynomial control based on tailored two‐party computation. International Journal of Robust and Nonlinear Control. 2020;30(11):4168-4187. doi:10.1002/rnc.5003"},"_id":"35580","intvolume":" 30","issue":"11","department":[{"_id":"622"}],"publication_status":"published","publication_identifier":{"issn":["1049-8923","1099-1239"]},"title":"Encrypted polynomial control based on tailored two‐party computation","language":[{"iso":"eng"}],"date_updated":"2023-01-09T16:36:57Z","doi":"10.1002/rnc.5003"},{"author":[{"full_name":"Al-Khatib, Khalid","first_name":"Khalid","last_name":"Al-Khatib"},{"first_name":"Yufang","full_name":"Hou, Yufang","last_name":"Hou"},{"last_name":"Wachsmuth","id":"3900","first_name":"Henning","full_name":"Wachsmuth, Henning"},{"full_name":"Jochim, Charles","first_name":"Charles","last_name":"Jochim"},{"first_name":"Francesca","full_name":"Bonin, Francesca","last_name":"Bonin"},{"full_name":"Stein, Benno","first_name":"Benno","last_name":"Stein"}],"department":[{"_id":"600"},{"_id":"568"}],"publication":"Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020)","status":"public","date_created":"2020-02-06T10:41:22Z","title":"End-to-End Argumentation Knowledge Graph Construction","user_id":"82920","main_file_link":[{"url":"https://aaai.org/ojs/index.php/AAAI/article/view/6231"}],"type":"conference","year":"2020","citation":{"ieee":"K. Al-Khatib, Y. Hou, H. Wachsmuth, C. Jochim, F. Bonin, and B. Stein, “End-to-End Argumentation Knowledge Graph Construction,” in Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020), 2020, pp. 7367–7374.","short":"K. Al-Khatib, Y. Hou, H. Wachsmuth, C. Jochim, F. Bonin, B. Stein, in: Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020), 2020, pp. 7367–7374.","bibtex":"@inproceedings{Al-Khatib_Hou_Wachsmuth_Jochim_Bonin_Stein_2020, title={End-to-End Argumentation Knowledge Graph Construction}, booktitle={Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020)}, author={Al-Khatib, Khalid and Hou, Yufang and Wachsmuth, Henning and Jochim, Charles and Bonin, Francesca and Stein, Benno}, year={2020}, pages={7367–7374} }","mla":"Al-Khatib, Khalid, et al. “End-to-End Argumentation Knowledge Graph Construction.” Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020), 2020, pp. 7367–74.","chicago":"Al-Khatib, Khalid, Yufang Hou, Henning Wachsmuth, Charles Jochim, Francesca Bonin, and Benno Stein. “End-to-End Argumentation Knowledge Graph Construction.” In Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020), 7367–74, 2020.","ama":"Al-Khatib K, Hou Y, Wachsmuth H, Jochim C, Bonin F, Stein B. End-to-End Argumentation Knowledge Graph Construction. In: Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020). ; 2020:7367-7374.","apa":"Al-Khatib, K., Hou, Y., Wachsmuth, H., Jochim, C., Bonin, F., & Stein, B. (2020). End-to-End Argumentation Knowledge Graph Construction. In Proceedings of the Thirty-Fourth AAAI Conference on Artificial Intelligence (AAAI 2020) (pp. 7367–7374)."},"page":"7367 - 7374","language":[{"iso":"eng"}],"date_updated":"2022-01-06T06:52:37Z","_id":"15820"},{"citation":{"mla":"von Neumann, Thilo, et al. “End-to-End Training of Time Domain Audio Separation and Recognition.” ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2020, pp. 7004–08, doi:10.1109/ICASSP40776.2020.9053461.","bibtex":"@inproceedings{von Neumann_Kinoshita_Drude_Boeddeker_Delcroix_Nakatani_Haeb-Umbach_2020, title={End-to-End Training of Time Domain Audio Separation and Recognition}, DOI={10.1109/ICASSP40776.2020.9053461}, booktitle={ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP)}, author={von Neumann, Thilo and Kinoshita, Keisuke and Drude, Lukas and Boeddeker, Christoph and Delcroix, Marc and Nakatani, Tomohiro and Haeb-Umbach, Reinhold}, year={2020}, pages={7004–7008} }","ama":"von Neumann T, Kinoshita K, Drude L, et al. End-to-End Training of Time Domain Audio Separation and Recognition. In: ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP). ; 2020:7004-7008. doi:10.1109/ICASSP40776.2020.9053461","apa":"von Neumann, T., Kinoshita, K., Drude, L., Boeddeker, C., Delcroix, M., Nakatani, T., & Haeb-Umbach, R. (2020). End-to-End Training of Time Domain Audio Separation and Recognition. ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 7004–7008. https://doi.org/10.1109/ICASSP40776.2020.9053461","chicago":"Neumann, Thilo von, Keisuke Kinoshita, Lukas Drude, Christoph Boeddeker, Marc Delcroix, Tomohiro Nakatani, and Reinhold Haeb-Umbach. “End-to-End Training of Time Domain Audio Separation and Recognition.” In ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 7004–8, 2020. https://doi.org/10.1109/ICASSP40776.2020.9053461.","ieee":"T. von Neumann et al., “End-to-End Training of Time Domain Audio Separation and Recognition,” in ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2020, pp. 7004–7008, doi: 10.1109/ICASSP40776.2020.9053461.","short":"T. von Neumann, K. Kinoshita, L. Drude, C. Boeddeker, M. Delcroix, T. Nakatani, R. Haeb-Umbach, in: ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 2020, pp. 7004–7008."},"type":"conference","year":"2020","page":"7004-7008","_id":"20762","quality_controlled":"1","author":[{"first_name":"Thilo","full_name":"von Neumann, Thilo","orcid":"https://orcid.org/0000-0002-7717-8670","last_name":"von Neumann","id":"49870"},{"full_name":"Kinoshita, Keisuke","first_name":"Keisuke","last_name":"Kinoshita"},{"full_name":"Drude, Lukas","first_name":"Lukas","last_name":"Drude"},{"first_name":"Christoph","full_name":"Boeddeker, Christoph","last_name":"Boeddeker","id":"40767"},{"last_name":"Delcroix","first_name":"Marc","full_name":"Delcroix, Marc"},{"first_name":"Tomohiro","full_name":"Nakatani, Tomohiro","last_name":"Nakatani"},{"id":"242","last_name":"Haeb-Umbach","full_name":"Haeb-Umbach, Reinhold","first_name":"Reinhold"}],"file_date_updated":"2020-12-16T14:09:48Z","publication":"ICASSP 2020 - 2020 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP)","file":[{"relation":"main_file","content_type":"application/pdf","date_updated":"2020-12-16T14:09:48Z","creator":"huesera","file_id":"20763","file_size":192529,"access_level":"open_access","file_name":"ICASSP_2020_vonNeumann_Paper.pdf","date_created":"2020-12-16T14:09:48Z"}],"has_accepted_license":"1","status":"public","date_created":"2020-12-16T14:07:54Z","abstract":[{"text":"The rising interest in single-channel multi-speaker speech separation sparked development of End-to-End (E2E) approaches to multispeaker speech recognition. However, up until now, state-of-theart neural network–based time domain source separation has not yet been combined with E2E speech recognition. We here demonstrate how to combine a separation module based on a Convolutional Time domain Audio Separation Network (Conv-TasNet) with an E2E speech recognizer and how to train such a model jointly by distributing it over multiple GPUs or by approximating truncated back-propagation for the convolutional front-end. To put this work into perspective and illustrate the complexity of the design space, we provide a compact overview of single-channel multi-speaker recognition systems. Our experiments show a word error rate of 11.0% on WSJ0-2mix and indicate that our joint time domain model can yield substantial improvements over cascade DNN-HMM and monolithic E2E frequency domain systems proposed so far.","lang":"eng"}],"ddc":["000"],"user_id":"49870","language":[{"iso":"eng"}],"date_updated":"2023-11-15T12:17:45Z","doi":"10.1109/ICASSP40776.2020.9053461","oa":"1","department":[{"_id":"54"}],"project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"title":"End-to-End Training of Time Domain Audio Separation and Recognition"},{"author":[{"id":"86954","last_name":"Meschede","full_name":"Meschede, Henning","first_name":"Henning"}],"publisher":"AHK","date_created":"2022-03-29T08:33:23Z","status":"public","place":"German-Latin American Conference Energiewende / Energy Transition (digital)","user_id":"86954","title":"Energy efficiency in industrial processes – best practice","language":[{"iso":"eng"}],"citation":{"mla":"Meschede, Henning. Energy Efficiency in Industrial Processes – Best Practice. AHK, 2020.","bibtex":"@book{Meschede_2020, place={German-Latin American Conference Energiewende / Energy Transition (digital)}, title={Energy efficiency in industrial processes – best practice}, publisher={AHK}, author={Meschede, Henning}, year={2020} }","ieee":"H. Meschede, Energy efficiency in industrial processes – best practice. German-Latin American Conference Energiewende / Energy Transition (digital): AHK, 2020.","chicago":"Meschede, Henning. Energy Efficiency in Industrial Processes – Best Practice. German-Latin American Conference Energiewende / Energy Transition (digital): AHK, 2020.","apa":"Meschede, H. (2020). Energy efficiency in industrial processes – best practice. AHK.","ama":"Meschede H. Energy Efficiency in Industrial Processes – Best Practice. AHK; 2020.","short":"H. Meschede, Energy Efficiency in Industrial Processes – Best Practice, AHK, German-Latin American Conference Energiewende / Energy Transition (digital), 2020."},"type":"misc","year":"2020","date_updated":"2022-03-29T09:01:05Z","_id":"30677"},{"date_created":"2020-07-14T09:32:33Z","project":[{"_id":"52","name":"Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"status":"public","volume":6,"department":[{"_id":"304"}],"publication":"Science Advances","author":[{"first_name":"Hossam","full_name":"Elgabarty, Hossam","last_name":"Elgabarty"},{"first_name":"Tobias","full_name":"Kampfrath, Tobias","last_name":"Kampfrath"},{"last_name":"Bonthuis","first_name":"Douwe Jan","full_name":"Bonthuis, Douwe Jan"},{"first_name":"Vasileios","full_name":"Balos, Vasileios","last_name":"Balos"},{"full_name":"Kaliannan, Naveen Kumar","first_name":"Naveen Kumar","last_name":"Kaliannan"},{"first_name":"Philip","full_name":"Loche, Philip","last_name":"Loche"},{"last_name":"Netz","first_name":"Roland R.","full_name":"Netz, Roland R."},{"last_name":"Wolf","full_name":"Wolf, Martin","first_name":"Martin"},{"last_name":"K{\\","full_name":"K{\\, Thomas D.","first_name":"Thomas D."},{"full_name":"Sajadi, Mohsen","first_name":"Mohsen","last_name":"Sajadi"}],"publisher":"American Association for the Advancement of Science","user_id":"71692","title":"Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation","language":[{"iso":"eng"}],"year":"2020","citation":{"ieee":"H. Elgabarty et al., “Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation,” Science Advances, vol. 6, no. 17, 2020.","short":"H. Elgabarty, T. Kampfrath, D.J. Bonthuis, V. Balos, N.K. Kaliannan, P. Loche, R.R. Netz, M. Wolf, T.D. K{\\, M. Sajadi, Science Advances 6 (2020).","bibtex":"@article{Elgabarty_Kampfrath_Bonthuis_Balos_Kaliannan_Loche_Netz_Wolf_K{\\_Sajadi_2020, title={Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation}, volume={6}, DOI={10.1126/sciadv.aay7074}, number={17}, journal={Science Advances}, publisher={American Association for the Advancement of Science}, author={Elgabarty, Hossam and Kampfrath, Tobias and Bonthuis, Douwe Jan and Balos, Vasileios and Kaliannan, Naveen Kumar and Loche, Philip and Netz, Roland R. and Wolf, Martin and K{\\, Thomas D. and Sajadi, Mohsen}, year={2020} }","mla":"Elgabarty, Hossam, et al. “Energy Transfer within the Hydrogen Bonding Network of Water Following Resonant Terahertz Excitation.” Science Advances, vol. 6, no. 17, American Association for the Advancement of Science, 2020, doi:10.1126/sciadv.aay7074.","apa":"Elgabarty, H., Kampfrath, T., Bonthuis, D. J., Balos, V., Kaliannan, N. K., Loche, P., … Sajadi, M. (2020). Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation. Science Advances, 6(17). https://doi.org/10.1126/sciadv.aay7074","ama":"Elgabarty H, Kampfrath T, Bonthuis DJ, et al. Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation. Science Advances. 2020;6(17). doi:10.1126/sciadv.aay7074","chicago":"Elgabarty, Hossam, Tobias Kampfrath, Douwe Jan Bonthuis, Vasileios Balos, Naveen Kumar Kaliannan, Philip Loche, Roland R. Netz, Martin Wolf, Thomas D. K{\\, and Mohsen Sajadi. “Energy Transfer within the Hydrogen Bonding Network of Water Following Resonant Terahertz Excitation.” Science Advances 6, no. 17 (2020). https://doi.org/10.1126/sciadv.aay7074."},"type":"journal_article","issue":"17","doi":"10.1126/sciadv.aay7074","intvolume":" 6","_id":"17381","date_updated":"2022-01-06T06:53:10Z"},{"date_updated":"2022-12-09T12:20:59Z","doi":"10.1126/sciadv.aay7074","language":[{"iso":"eng"}],"title":"Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation","publication_identifier":{"issn":["2375-2548"]},"publication_status":"published","intvolume":" 6","_id":"34302","issue":"17","year":"2020","citation":{"chicago":"Elgabarty, Hossam, Tobias Kampfrath, Douwe Jan Bonthuis, Vasileios Balos, Naveen Kumar Kaliannan, Philip Loche, Roland R. Netz, Martin Wolf, Thomas Kühne, and Mohsen Sajadi. “Energy Transfer within the Hydrogen Bonding Network of Water Following Resonant Terahertz Excitation.” Science Advances 6, no. 17 (2020). https://doi.org/10.1126/sciadv.aay7074.","ama":"Elgabarty H, Kampfrath T, Bonthuis DJ, et al. Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation. Science Advances. 2020;6(17). doi:10.1126/sciadv.aay7074","apa":"Elgabarty, H., Kampfrath, T., Bonthuis, D. J., Balos, V., Kaliannan, N. K., Loche, P., Netz, R. R., Wolf, M., Kühne, T., & Sajadi, M. (2020). Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation. Science Advances, 6(17). https://doi.org/10.1126/sciadv.aay7074","mla":"Elgabarty, Hossam, et al. “Energy Transfer within the Hydrogen Bonding Network of Water Following Resonant Terahertz Excitation.” Science Advances, vol. 6, no. 17, American Association for the Advancement of Science (AAAS), 2020, doi:10.1126/sciadv.aay7074.","bibtex":"@article{Elgabarty_Kampfrath_Bonthuis_Balos_Kaliannan_Loche_Netz_Wolf_Kühne_Sajadi_2020, title={Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation}, volume={6}, DOI={10.1126/sciadv.aay7074}, number={17}, journal={Science Advances}, publisher={American Association for the Advancement of Science (AAAS)}, author={Elgabarty, Hossam and Kampfrath, Tobias and Bonthuis, Douwe Jan and Balos, Vasileios and Kaliannan, Naveen Kumar and Loche, Philip and Netz, Roland R. and Wolf, Martin and Kühne, Thomas and Sajadi, Mohsen}, year={2020} }","short":"H. Elgabarty, T. Kampfrath, D.J. Bonthuis, V. Balos, N.K. Kaliannan, P. Loche, R.R. Netz, M. Wolf, T. Kühne, M. Sajadi, Science Advances 6 (2020).","ieee":"H. Elgabarty et al., “Energy transfer within the hydrogen bonding network of water following resonant terahertz excitation,” Science Advances, vol. 6, no. 17, 2020, doi: 10.1126/sciadv.aay7074."},"type":"journal_article","abstract":[{"text":"