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Hoener, T. Bierkandt, S. Shaqiri, and T. Kasper, “N2O oxidized combustion of ethylene: Detailed laminar flame structure and the significance of oxidizer decomposition kinetics for modeling,” <i>Proceedings of the Combustion Institute</i>, vol. 40, no. 1–4, Art. no. 105683, 2024, doi: <a href=\"https://doi.org/10.1016/j.proci.2024.105683\">10.1016/j.proci.2024.105683</a>.","ama":"Hoener M, Bierkandt T, Shaqiri S, Kasper T. N2O oxidized combustion of ethylene: Detailed laminar flame structure and the significance of oxidizer decomposition kinetics for modeling. <i>Proceedings of the Combustion Institute</i>. 2024;40(1-4). doi:<a href=\"https://doi.org/10.1016/j.proci.2024.105683\">10.1016/j.proci.2024.105683</a>","apa":"Hoener, M., Bierkandt, T., Shaqiri, S., &#38; Kasper, T. (2024). 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Dazu spezifiziere ich ein gegenstandsbezogenes Expertisemodell (Prediger) für den Unterricht zur anaGeo., erhebe Vorwissen von (angehenden) Lehrkräften und erprobe Aus- und Fortbildungsaktivitäten in verschiedenen Stichproben zur Rekonstruktion von Orientierungen."}],"status":"public","file":[{"relation":"main_file","success":1,"content_type":"application/pdf","file_name":"BzMU24_HERRMANN_Geometriefortbildungen.pdf","file_id":"61019","access_level":"closed","file_size":57284,"creator":"herrmann","date_created":"2025-08-26T08:38:40Z","date_updated":"2025-08-26T08:38:40Z"}],"publication":"Beiträge zum Mathematikunterricht 2024","type":"conference","keyword":["Mathematikfortbildungen","analytische Geometrie","Expertise"],"ddc":["510"],"language":[{"iso":"ger"}],"file_date_updated":"2025-08-26T08:38:40Z","_id":"59337","user_id":"64060","year":"2024","citation":{"ieee":"J. Herrmann, “Ansprüche an eine Fortbildung zur analytischen Geometrie,” presented at the 57. 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Jahrestagung der GdM, Duisburg/Essen."},"jel":["C"],"has_accepted_license":"1","title":"Ansprüche an eine Fortbildung zur analytischen Geometrie","conference":{"location":"Duisburg/Essen","end_date":"2024-03-08","start_date":"2024-03-04","name":"57. Jahrestagung der GdM"},"publisher":"LibreCat University","date_updated":"2026-02-13T09:36:13Z","date_created":"2025-04-04T06:29:02Z","author":[{"full_name":"Herrmann, Janine","last_name":"Herrmann","first_name":"Janine"}]},{"year":"2024","citation":{"ieee":"M. Vernholz and G. Jonas-Ahrend, “„Und ich sag mal, Theorie und Praxis ist zweierlei” – Wie können Praxisphasen Lehramtsstudierende auf zukünftige Anforderungen vorbereiten?,” presented at the Jahrestagung 2024 der DGTB, Halle (an der Saale), 2024.","chicago":"Vernholz, Mats, and Gabriela Jonas-Ahrend. “„Und Ich Sag Mal, Theorie Und Praxis Ist Zweierlei” – Wie Können Praxisphasen Lehramtsstudierende Auf Zukünftige Anforderungen Vorbereiten?,” 2024.","ama":"Vernholz M, Jonas-Ahrend G. „Und ich sag mal, Theorie und Praxis ist zweierlei” – Wie können Praxisphasen Lehramtsstudierende auf zukünftige Anforderungen vorbereiten? In: ; 2024.","apa":"Vernholz, M., &#38; Jonas-Ahrend, G. (2024). <i>„Und ich sag mal, Theorie und Praxis ist zweierlei” – Wie können Praxisphasen Lehramtsstudierende auf zukünftige Anforderungen vorbereiten?</i> Jahrestagung 2024 der DGTB, Halle (an der Saale).","short":"M. Vernholz, G. Jonas-Ahrend, in: 2024.","bibtex":"@inproceedings{Vernholz_Jonas-Ahrend_2024, title={„Und ich sag mal, Theorie und Praxis ist zweierlei” – Wie können Praxisphasen Lehramtsstudierende auf zukünftige Anforderungen vorbereiten?}, author={Vernholz, Mats and Jonas-Ahrend, Gabriela}, year={2024} }","mla":"Vernholz, Mats, and Gabriela Jonas-Ahrend. <i>„Und Ich Sag Mal, Theorie Und Praxis Ist Zweierlei” – Wie Können Praxisphasen Lehramtsstudierende Auf Zukünftige Anforderungen Vorbereiten?</i> 2024."},"title":"„Und ich sag mal, Theorie und Praxis ist zweierlei” – Wie können Praxisphasen Lehramtsstudierende auf zukünftige Anforderungen vorbereiten?","conference":{"location":"Halle (an der Saale)","end_date":"2024-09-20","start_date":"2024-09-19","name":"Jahrestagung 2024 der DGTB"},"date_updated":"2026-02-17T07:52:16Z","author":[{"full_name":"Vernholz, Mats","id":"76955","last_name":"Vernholz","orcid":"0000-0001-5175-357X","first_name":"Mats"},{"full_name":"Jonas-Ahrend, Gabriela","id":"77633","orcid":"0000-0003-3898-954X","last_name":"Jonas-Ahrend","first_name":"Gabriela"}],"date_created":"2025-01-17T06:16:35Z","status":"public","type":"conference_abstract","language":[{"iso":"eng"}],"_id":"58228","department":[{"_id":"300"}],"user_id":"76955"},{"extern":"1","language":[{"iso":"eng"}],"_id":"64063","user_id":"100715","abstract":[{"lang":"eng","text":"Sodium batteries are an attractive alternative for future energy storage as they can be produced with abundant and low-cost materials. Nonetheless, sodium-ion batteries (SIBs) are often composed of flammable and volatile carbonate-based liquid electrolytes. Polymer electrolytes have attracted significant attention as safer alternatives. Among polymer electrolytes, single-ion conductive polymer electrolytes (SIPEs) are considered particularly interesting because they can suppress dendrite growth, enabling high-performance (quasi)-solid-state sodium–(metal) batteries. In this work, a self-standing, flexible, quasi-solid-state SIPE is investigated, which is composed of sodium 4-styrene sulfonyl (trifluoromethanesulfonyl) imide (NaSTFSI), pentaerythritol tetrakis(3-mercaptopropionate) (PETMP) and pentaerythritol tetraacrylate (PET4A) blended with poly(vinylidene fluoride-co-hexafluoropropylene) (PVDF-HFP). The SIPE membrane, including 50 wt% of molecular transporter, exhibits ionic conductivity of 1.4 × 10−5 S cm−1 and 1.3 × 10−4 S cm−1 at 20 °C and 90 °C, respectively, thermal stability up to 280 °C, electrochemical stability window up to 4.5 V vs. Na/Na+, and Na plating/stripping reversibility in symmetric Na‖Na cells. The manufactured SIPE implemented in Prussian White (PW)‖Na cells enables the delivery of 147 mA h g−1 of PW at 15 mA g−1 with a Coulombic efficiency of over 99%, which is comparable with the PW‖Na cells using liquid carbonate electrolyte, confirming the suitability of the designed SIPE for sodium–(metal) batteries."}],"status":"public","publication":"Journal of Materials Chemistry A","type":"journal_article","title":"Sodium 4-styrenesulfonyl(trifluoromethanesulfonyl)imide-based single-ion conducting polymer electrolyte incorporating molecular transporters for quasi-solid-state sodium batteries","doi":"10.1039/D4TA02329C","publisher":"The Royal Society of Chemistry","date_updated":"2026-02-17T16:12:37Z","volume":12,"date_created":"2026-02-07T16:19:39Z","author":[{"last_name":"Wunder","full_name":"Wunder, Clemens","first_name":"Clemens"},{"last_name":"Lai","full_name":"Lai, Thanh-Loan","first_name":"Thanh-Loan"},{"full_name":"Šić, Edina","last_name":"Šić","first_name":"Edina"},{"first_name":"Torsten","last_name":"Gutmann","full_name":"Gutmann, Torsten","id":"118165"},{"full_name":"Vito, Eric","last_name":"Vito","first_name":"Eric"},{"last_name":"Buntkowsky","full_name":"Buntkowsky, Gerd","first_name":"Gerd"},{"first_name":"Maider","last_name":"Zarrabeitia","full_name":"Zarrabeitia, Maider"},{"first_name":"Stefano","full_name":"Passerini, Stefano","last_name":"Passerini"}],"year":"2024","intvolume":"        12","page":"20935–20946","citation":{"apa":"Wunder, C., Lai, T.-L., Šić, E., Gutmann, T., Vito, E., Buntkowsky, G., Zarrabeitia, M., &#38; Passerini, S. (2024). Sodium 4-styrenesulfonyl(trifluoromethanesulfonyl)imide-based single-ion conducting polymer electrolyte incorporating molecular transporters for quasi-solid-state sodium batteries. <i>Journal of Materials Chemistry A</i>, <i>12</i>(32), 20935–20946. <a href=\"https://doi.org/10.1039/D4TA02329C\">https://doi.org/10.1039/D4TA02329C</a>","mla":"Wunder, Clemens, et al. “Sodium 4-Styrenesulfonyl(Trifluoromethanesulfonyl)Imide-Based Single-Ion Conducting Polymer Electrolyte Incorporating Molecular Transporters for Quasi-Solid-State Sodium Batteries.” <i>Journal of Materials Chemistry A</i>, vol. 12, no. 32, The Royal Society of Chemistry, 2024, pp. 20935–20946, doi:<a href=\"https://doi.org/10.1039/D4TA02329C\">10.1039/D4TA02329C</a>.","bibtex":"@article{Wunder_Lai_Šić_Gutmann_Vito_Buntkowsky_Zarrabeitia_Passerini_2024, title={Sodium 4-styrenesulfonyl(trifluoromethanesulfonyl)imide-based single-ion conducting polymer electrolyte incorporating molecular transporters for quasi-solid-state sodium batteries}, volume={12}, DOI={<a href=\"https://doi.org/10.1039/D4TA02329C\">10.1039/D4TA02329C</a>}, number={32}, journal={Journal of Materials Chemistry A}, publisher={The Royal Society of Chemistry}, author={Wunder, Clemens and Lai, Thanh-Loan and Šić, Edina and Gutmann, Torsten and Vito, Eric and Buntkowsky, Gerd and Zarrabeitia, Maider and Passerini, Stefano}, year={2024}, pages={20935–20946} }","short":"C. Wunder, T.-L. Lai, E. Šić, T. Gutmann, E. Vito, G. Buntkowsky, M. Zarrabeitia, S. Passerini, Journal of Materials Chemistry A 12 (2024) 20935–20946.","chicago":"Wunder, Clemens, Thanh-Loan Lai, Edina Šić, Torsten Gutmann, Eric Vito, Gerd Buntkowsky, Maider Zarrabeitia, and Stefano Passerini. “Sodium 4-Styrenesulfonyl(Trifluoromethanesulfonyl)Imide-Based Single-Ion Conducting Polymer Electrolyte Incorporating Molecular Transporters for Quasi-Solid-State Sodium Batteries.” <i>Journal of Materials Chemistry A</i> 12, no. 32 (2024): 20935–20946. <a href=\"https://doi.org/10.1039/D4TA02329C\">https://doi.org/10.1039/D4TA02329C</a>.","ieee":"C. Wunder <i>et al.</i>, “Sodium 4-styrenesulfonyl(trifluoromethanesulfonyl)imide-based single-ion conducting polymer electrolyte incorporating molecular transporters for quasi-solid-state sodium batteries,” <i>Journal of Materials Chemistry A</i>, vol. 12, no. 32, pp. 20935–20946, 2024, doi: <a href=\"https://doi.org/10.1039/D4TA02329C\">10.1039/D4TA02329C</a>.","ama":"Wunder C, Lai T-L, Šić E, et al. Sodium 4-styrenesulfonyl(trifluoromethanesulfonyl)imide-based single-ion conducting polymer electrolyte incorporating molecular transporters for quasi-solid-state sodium batteries. <i>Journal of Materials Chemistry A</i>. 2024;12(32):20935–20946. doi:<a href=\"https://doi.org/10.1039/D4TA02329C\">10.1039/D4TA02329C</a>"},"issue":"32"},{"publication_identifier":{"issn":["1867-3880"]},"year":"2024","citation":{"apa":"Wissel, T., Rösler, L., Brodrecht, M., Höfler, M. V., Herr, K., Oliveira Jr., M., Klimavicius, V., Ebert, M., Breitzke, H., Hoffmann, M., Buntkowsky, G., &#38; Gutmann, T. (2024). Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques. <i>ChemCatChem</i>, <i>17</i>, e202401511. <a href=\"https://doi.org/10.1002/cctc.202401511\">https://doi.org/10.1002/cctc.202401511</a>","bibtex":"@article{Wissel_Rösler_Brodrecht_Höfler_Herr_Oliveira Jr._Klimavicius_Ebert_Breitzke_Hoffmann_et al._2024, title={Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques}, volume={17}, DOI={<a href=\"https://doi.org/10.1002/cctc.202401511\">10.1002/cctc.202401511</a>}, journal={ChemCatChem}, publisher={John Wiley &#38; Sons, Ltd}, author={Wissel, Till and Rösler, Lorenz and Brodrecht, Martin and Höfler, Mark V. and Herr, Kevin and Oliveira Jr., Marcos and Klimavicius, Vytautas and Ebert, Martin and Breitzke, Hergen and Hoffmann, Markus and et al.}, year={2024}, pages={e202401511} }","mla":"Wissel, Till, et al. “Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques.” <i>ChemCatChem</i>, vol. 17, John Wiley &#38; Sons, Ltd, 2024, p. e202401511, doi:<a href=\"https://doi.org/10.1002/cctc.202401511\">10.1002/cctc.202401511</a>.","short":"T. Wissel, L. Rösler, M. Brodrecht, M.V. Höfler, K. Herr, M. Oliveira Jr., V. Klimavicius, M. Ebert, H. Breitzke, M. Hoffmann, G. Buntkowsky, T. Gutmann, ChemCatChem 17 (2024) e202401511.","ama":"Wissel T, Rösler L, Brodrecht M, et al. Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques. <i>ChemCatChem</i>. 2024;17:e202401511. doi:<a href=\"https://doi.org/10.1002/cctc.202401511\">10.1002/cctc.202401511</a>","chicago":"Wissel, Till, Lorenz Rösler, Martin Brodrecht, Mark V. Höfler, Kevin Herr, Marcos Oliveira Jr., Vytautas Klimavicius, et al. “Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques.” <i>ChemCatChem</i> 17 (2024): e202401511. <a href=\"https://doi.org/10.1002/cctc.202401511\">https://doi.org/10.1002/cctc.202401511</a>.","ieee":"T. Wissel <i>et al.</i>, “Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques,” <i>ChemCatChem</i>, vol. 17, p. e202401511, 2024, doi: <a href=\"https://doi.org/10.1002/cctc.202401511\">10.1002/cctc.202401511</a>."},"intvolume":"        17","page":"e202401511","publisher":"John Wiley & Sons, Ltd","date_updated":"2026-02-17T16:12:41Z","author":[{"last_name":"Wissel","full_name":"Wissel, Till","first_name":"Till"},{"first_name":"Lorenz","full_name":"Rösler, Lorenz","last_name":"Rösler"},{"first_name":"Martin","full_name":"Brodrecht, Martin","last_name":"Brodrecht"},{"full_name":"Höfler, Mark V.","last_name":"Höfler","first_name":"Mark V."},{"full_name":"Herr, Kevin","last_name":"Herr","first_name":"Kevin"},{"full_name":"Oliveira Jr., Marcos","last_name":"Oliveira Jr.","first_name":"Marcos"},{"last_name":"Klimavicius","full_name":"Klimavicius, Vytautas","first_name":"Vytautas"},{"first_name":"Martin","last_name":"Ebert","full_name":"Ebert, Martin"},{"first_name":"Hergen","full_name":"Breitzke, Hergen","last_name":"Breitzke"},{"last_name":"Hoffmann","full_name":"Hoffmann, Markus","first_name":"Markus"},{"full_name":"Buntkowsky, Gerd","last_name":"Buntkowsky","first_name":"Gerd"},{"first_name":"Torsten","id":"118165","full_name":"Gutmann, Torsten","last_name":"Gutmann"}],"date_created":"2026-02-07T16:18:53Z","volume":17,"title":"Novel Heterogeneous Pd Catalysts for Cross-Coupling Reactions in Biocompatible Media: Structural Insights from Solid-State NMR Techniques","doi":"10.1002/cctc.202401511","type":"journal_article","publication":"ChemCatChem","abstract":[{"text":"Abstract Novel SBA-15-supported heterogeneous catalysts are synthesized and applied in the Mizoroki?Heck and the Suzuki?Miyaura cross-coupling reactions in green solvents like PEG or water. The structural properties of the products after each synthesis step are monitored by different analytics. The amount of amine/carboxyl groups and vanillin/histidine methyl ester and thermal stability are determined by TGA and elemental analysis, while ICP-OES delivered the amount of palladium of the catalysts. The morphology is investigated by SEM and XPS and confirms the presence of coordinated palladium in the zero-oxidation state. Gas adsorption analysis is conducted, which indicates the presence of palladium clusters in one of the two catalysts, which is underlined by BSE images combined with EDX. A detailed 13C ssNMR and DNP-enhanced 15N ssNMR spectral analysis is presented, which provides ultimate proof of the successful syntheses of the catalysts. The coordination of the palladium onto the carrier material is shown by combining the NMR spectral results with the results of the other analytics. First catalytic tests show for the Mizoroki?Heck reaction yields up to nearly 100% and for the Suzuki-Miyaura up to 88% in the presence of PEG and water, respectively.","lang":"eng"}],"status":"public","_id":"64062","user_id":"100715","keyword":["SBA-15","Heterogeneous catalyst","Pd cross-coupling","Polyethylene glycol","Solid-state DNP NMR"],"language":[{"iso":"eng"}],"extern":"1"},{"date_updated":"2026-02-17T16:13:13Z","date_created":"2026-02-07T16:10:40Z","author":[{"first_name":"Edina","full_name":"Šić, Edina","last_name":"Šić"},{"first_name":"Dominion","full_name":"Fredericks, Dominion","last_name":"Fredericks"},{"first_name":"Oliver","full_name":"Pecher, Oliver","last_name":"Pecher"},{"full_name":"Wegner, Sebastian","last_name":"Wegner","first_name":"Sebastian"},{"first_name":"Hergen","full_name":"Breitzke, Hergen","last_name":"Breitzke"},{"full_name":"Singh, Vickram","last_name":"Singh","first_name":"Vickram"},{"first_name":"Gerd","full_name":"Buntkowsky, Gerd","last_name":"Buntkowsky"},{"last_name":"Gutmann","id":"118165","full_name":"Gutmann, Torsten","first_name":"Torsten"}],"title":"Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells","doi":"10.1007/s00723-024-01643-1","publication_identifier":{"issn":["1613-7507"]},"issue":"55","year":"2024","page":"575–583","citation":{"chicago":"Šić, Edina, Dominion Fredericks, Oliver Pecher, Sebastian Wegner, Hergen Breitzke, Vickram Singh, Gerd Buntkowsky, and Torsten Gutmann. “Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells.” <i>Applied Magnetic Resonance</i>, no. 55 (2024): 575–583. <a href=\"https://doi.org/10.1007/s00723-024-01643-1\">https://doi.org/10.1007/s00723-024-01643-1</a>.","ieee":"E. Šić <i>et al.</i>, “Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells,” <i>Applied Magnetic Resonance</i>, no. 55, pp. 575–583, 2024, doi: <a href=\"https://doi.org/10.1007/s00723-024-01643-1\">10.1007/s00723-024-01643-1</a>.","ama":"Šić E, Fredericks D, Pecher O, et al. Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells. <i>Applied Magnetic Resonance</i>. 2024;(55):575–583. doi:<a href=\"https://doi.org/10.1007/s00723-024-01643-1\">10.1007/s00723-024-01643-1</a>","apa":"Šić, E., Fredericks, D., Pecher, O., Wegner, S., Breitzke, H., Singh, V., Buntkowsky, G., &#38; Gutmann, T. (2024). Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells. <i>Applied Magnetic Resonance</i>, <i>55</i>, 575–583. <a href=\"https://doi.org/10.1007/s00723-024-01643-1\">https://doi.org/10.1007/s00723-024-01643-1</a>","mla":"Šić, Edina, et al. “Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells.” <i>Applied Magnetic Resonance</i>, no. 55, 2024, pp. 575–583, doi:<a href=\"https://doi.org/10.1007/s00723-024-01643-1\">10.1007/s00723-024-01643-1</a>.","bibtex":"@article{Šić_Fredericks_Pecher_Wegner_Breitzke_Singh_Buntkowsky_Gutmann_2024, title={Towards Routine 7Li In Situ Solid-State NMR Studies of Electrochemical Processes in Li\\textbarLiPF6\\textbarLFP Cells}, DOI={<a href=\"https://doi.org/10.1007/s00723-024-01643-1\">10.1007/s00723-024-01643-1</a>}, number={55}, journal={Applied Magnetic Resonance}, author={Šić, Edina and Fredericks, Dominion and Pecher, Oliver and Wegner, Sebastian and Breitzke, Hergen and Singh, Vickram and Buntkowsky, Gerd and Gutmann, Torsten}, year={2024}, pages={575–583} }","short":"E. Šić, D. Fredericks, O. Pecher, S. Wegner, H. Breitzke, V. Singh, G. Buntkowsky, T. Gutmann, Applied Magnetic Resonance (2024) 575–583."},"_id":"64043","user_id":"100715","language":[{"iso":"eng"}],"extern":"1","publication":"Applied Magnetic Resonance","type":"journal_article","abstract":[{"text":"In this study, electrochemical processes in a Li{\\textbar}LiPF6{\\textbar}LFP cell have been explored applying advanced solid-state NMR technologies. In situ solid-state NMR allows to monitor structural changes in local environments in commercially available cell components during galvanostatic cycling. In collaboration with Dragonfly Energy, ePROBE GmbH and Bruker BioSpin GmbH & Co. KG, we have demonstrated an experimental procedure for routine application of in situ solid-state NMR for battery research. This points out the high potential of this approach for use in the energy storage industry.","lang":"eng"}],"status":"public"},{"issue":"8","year":"2024","citation":{"ieee":"S. Nasemann <i>et al.</i>, “At the limits of bisphosphonio-substituted stannylenes,” <i>Chemistry - An Asian Journal</i>, vol. 19, no. 8, p. e202300950, 2024, doi: <a href=\"https://doi.org/10.1002/asia.202300950\">10.1002/asia.202300950</a>.","chicago":"Nasemann, Sina, Roman Franz, Denis Kargin, Clemens Bruhn, Zsolt Kelemen, Torsten Gutmann, and Rudolf Pietschnig. “At the Limits of Bisphosphonio-Substituted Stannylenes.” <i>Chemistry - An Asian Journal</i> 19, no. 8 (2024): e202300950. <a href=\"https://doi.org/10.1002/asia.202300950\">https://doi.org/10.1002/asia.202300950</a>.","ama":"Nasemann S, Franz R, Kargin D, et al. At the limits of bisphosphonio-substituted stannylenes. <i>Chemistry - An Asian Journal</i>. 2024;19(8):e202300950. doi:<a href=\"https://doi.org/10.1002/asia.202300950\">10.1002/asia.202300950</a>","short":"S. Nasemann, R. Franz, D. Kargin, C. Bruhn, Z. Kelemen, T. Gutmann, R. Pietschnig, Chemistry - An Asian Journal 19 (2024) e202300950.","mla":"Nasemann, Sina, et al. “At the Limits of Bisphosphonio-Substituted Stannylenes.” <i>Chemistry - An Asian Journal</i>, vol. 19, no. 8, John Wiley &#38; Sons, Ltd, 2024, p. e202300950, doi:<a href=\"https://doi.org/10.1002/asia.202300950\">10.1002/asia.202300950</a>.","bibtex":"@article{Nasemann_Franz_Kargin_Bruhn_Kelemen_Gutmann_Pietschnig_2024, title={At the limits of bisphosphonio-substituted stannylenes}, volume={19}, DOI={<a href=\"https://doi.org/10.1002/asia.202300950\">10.1002/asia.202300950</a>}, number={8}, journal={Chemistry - An Asian Journal}, publisher={John Wiley &#38; Sons, Ltd}, author={Nasemann, Sina and Franz, Roman and Kargin, Denis and Bruhn, Clemens and Kelemen, Zsolt and Gutmann, Torsten and Pietschnig, Rudolf}, year={2024}, pages={e202300950} }","apa":"Nasemann, S., Franz, R., Kargin, D., Bruhn, C., Kelemen, Z., Gutmann, T., &#38; Pietschnig, R. (2024). At the limits of bisphosphonio-substituted stannylenes. <i>Chemistry - An Asian Journal</i>, <i>19</i>(8), e202300950. <a href=\"https://doi.org/10.1002/asia.202300950\">https://doi.org/10.1002/asia.202300950</a>"},"page":"e202300950","intvolume":"        19","date_updated":"2026-02-17T16:14:49Z","publisher":"John Wiley & Sons, Ltd","date_created":"2026-02-07T16:01:49Z","author":[{"first_name":"Sina","last_name":"Nasemann","full_name":"Nasemann, Sina"},{"first_name":"Roman","full_name":"Franz, Roman","last_name":"Franz"},{"first_name":"Denis","last_name":"Kargin","full_name":"Kargin, Denis"},{"first_name":"Clemens","full_name":"Bruhn, Clemens","last_name":"Bruhn"},{"first_name":"Zsolt","last_name":"Kelemen","full_name":"Kelemen, Zsolt"},{"full_name":"Gutmann, Torsten","id":"118165","last_name":"Gutmann","first_name":"Torsten"},{"last_name":"Pietschnig","full_name":"Pietschnig, Rudolf","first_name":"Rudolf"}],"volume":19,"title":"At the limits of bisphosphonio-substituted stannylenes","doi":"10.1002/asia.202300950","type":"journal_article","publication":"Chemistry - An Asian Journal","abstract":[{"text":"Abstract Donor stabilization of Sn(II) and Pb(II) halides with 1,1?-ferrocenylene bridged bisphosphanes has been explored for Fe(C5H4P(C6H5)2)2 (dppf), and Fe(C5H4PH(C4H9))2. These bisphosphanes are reacted with SnBr2 and PbCl2 with and without additional Lewis acid (AlCl3) forming acyclic and cyclic donor adducts from which the latter represent bisphosphoniotetrylenes. Since dynamic exchange in solution is observed, characterization includes solution and solid-state NMR in addition to SC-XRD, amended by DFT calculations.","lang":"eng"}],"status":"public","_id":"64017","user_id":"100715","keyword":["ferrocene","lead","phosphorus","tetrylene","tin"],"extern":"1","language":[{"iso":"eng"}]}]
