[{"intvolume":"      2021","date_updated":"2025-10-21T11:29:49Z","publication_identifier":{"isbn":["978-3-9820349-4-2"]},"author":[{"id":"119325","full_name":"Diekmann, Isabell","first_name":"Isabell","last_name":"Diekmann"}],"status":"public","year":"2021","title":"Differenzierung von Islam- und Muslim*innenfeindlichkeit – Potenziale für die Praxis","volume":2021,"user_id":"119325","publisher":"Universität Osnabrück","_id":"61914","language":[{"iso":"eng"}],"page":"77 – 89","extern":"1","citation":{"bibtex":"@article{Diekmann_2021, title={Differenzierung von Islam- und Muslim*innenfeindlichkeit – Potenziale für die Praxis}, volume={2021}, number={1}, journal={Perspektiven. Soziale Arbeit in der Migrationsgesellschaft und muslimische Wohlfahrtspflege }, publisher={Universität Osnabrück}, author={Diekmann, Isabell}, year={2021}, pages={77 – 89} }","ama":"Diekmann I. Differenzierung von Islam- und Muslim*innenfeindlichkeit – Potenziale für die Praxis. <i>Perspektiven Soziale Arbeit in der Migrationsgesellschaft und muslimische Wohlfahrtspflege </i>. 2021;2021(1):77 – 89.","mla":"Diekmann, Isabell. “Differenzierung von Islam- Und Muslim*innenfeindlichkeit – Potenziale Für Die Praxis.” <i>Perspektiven. Soziale Arbeit in Der Migrationsgesellschaft Und Muslimische Wohlfahrtspflege </i>, vol. 2021, no. 1, Universität Osnabrück, 2021, pp. 77 – 89.","short":"I. Diekmann, Perspektiven. Soziale Arbeit in Der Migrationsgesellschaft Und Muslimische Wohlfahrtspflege  2021 (2021) 77 – 89.","chicago":"Diekmann, Isabell. “Differenzierung von Islam- Und Muslim*innenfeindlichkeit – Potenziale Für Die Praxis.” <i>Perspektiven. Soziale Arbeit in Der Migrationsgesellschaft Und Muslimische Wohlfahrtspflege </i> 2021, no. 1 (2021): 77 – 89.","ieee":"I. Diekmann, “Differenzierung von Islam- und Muslim*innenfeindlichkeit – Potenziale für die Praxis,” <i>Perspektiven. Soziale Arbeit in der Migrationsgesellschaft und muslimische Wohlfahrtspflege </i>, vol. 2021, no. 1, pp. 77 – 89, 2021.","apa":"Diekmann, I. (2021). Differenzierung von Islam- und Muslim*innenfeindlichkeit – Potenziale für die Praxis. <i>Perspektiven. Soziale Arbeit in Der Migrationsgesellschaft Und Muslimische Wohlfahrtspflege </i>, <i>2021</i>(1), 77 – 89."},"issue":"1","publication":"Perspektiven. Soziale Arbeit in der Migrationsgesellschaft und muslimische Wohlfahrtspflege ","type":"journal_article","date_created":"2025-10-21T11:21:44Z"},{"status":"public","page":"1-1","_id":"29209","publisher":"Institute of Electrical and Electronics Engineers (IEEE)","user_id":"44271","citation":{"short":"D. Fang, A. Zazzi, J. Müller, D. Dray, C. Fullner, P. Marin-Palomo, A. Tabatabaei Mashayekh, A. Dipta Das, M. Weizel, S. Gudyriev, W. Freude, S. Randel, J.C. Scheytt, J. Witzens, C. Koos, Journal of Lightwave Technology (2021) 1–1.","chicago":"Fang, Dengyang, Andrea Zazzi, Juliana Müller, Daniel Dray, Christoph Fullner, Pablo Marin-Palomo, Alireza Tabatabaei Mashayekh, et al. “Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters.” <i>Journal of Lightwave Technology</i>, 2021, 1–1. <a href=\"https://doi.org/10.1109/jlt.2021.3130764\">https://doi.org/10.1109/jlt.2021.3130764</a>.","apa":"Fang, D., Zazzi, A., Müller, J., Dray, D., Fullner, C., Marin-Palomo, P., Tabatabaei Mashayekh, A., Dipta Das, A., Weizel, M., Gudyriev, S., Freude, W., Randel, S., Scheytt, J. C., Witzens, J., &#38; Koos, C. (2021). Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters. <i>Journal of Lightwave Technology</i>, 1–1. <a href=\"https://doi.org/10.1109/jlt.2021.3130764\">https://doi.org/10.1109/jlt.2021.3130764</a>","ieee":"D. Fang <i>et al.</i>, “Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters,” <i>Journal of Lightwave Technology</i>, pp. 1–1, 2021, doi: <a href=\"https://doi.org/10.1109/jlt.2021.3130764\">10.1109/jlt.2021.3130764</a>.","ama":"Fang D, Zazzi A, Müller J, et al. Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters. <i>Journal of Lightwave Technology</i>. Published online 2021:1-1. doi:<a href=\"https://doi.org/10.1109/jlt.2021.3130764\">10.1109/jlt.2021.3130764</a>","bibtex":"@article{Fang_Zazzi_Müller_Dray_Fullner_Marin-Palomo_Tabatabaei Mashayekh_Dipta Das_Weizel_Gudyriev_et al._2021, title={Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters}, DOI={<a href=\"https://doi.org/10.1109/jlt.2021.3130764\">10.1109/jlt.2021.3130764</a>}, journal={Journal of Lightwave Technology}, publisher={Institute of Electrical and Electronics Engineers (IEEE)}, author={Fang, Dengyang and Zazzi, Andrea and Müller, Juliana and Dray, Daniel and Fullner, Christoph and Marin-Palomo, Pablo and Tabatabaei Mashayekh, Alireza and Dipta Das, Arka and Weizel, Maxim and Gudyriev, Sergiy and et al.}, year={2021}, pages={1–1} }","mla":"Fang, Dengyang, et al. “Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters.” <i>Journal of Lightwave Technology</i>, Institute of Electrical and Electronics Engineers (IEEE), 2021, pp. 1–1, doi:<a href=\"https://doi.org/10.1109/jlt.2021.3130764\">10.1109/jlt.2021.3130764</a>."},"project":[{"name":"SPP 2111; TP: Ultrabreitbandiger Photonisch-Elektronischer Analog-Digital-Wandler (PACE) - Phase 2","_id":"303"}],"year":"2021","title":"Optical Arbitrary Waveform Measurement Using Silicon Photonic Slicing Filters","publication_identifier":{"issn":["0733-8724","1558-2213"]},"author":[{"full_name":"Fang, Dengyang","first_name":"Dengyang","last_name":"Fang"},{"full_name":"Zazzi, Andrea","last_name":"Zazzi","first_name":"Andrea"},{"full_name":"Müller, Juliana","last_name":"Müller","first_name":"Juliana"},{"full_name":"Dray, Daniel","last_name":"Dray","first_name":"Daniel"},{"full_name":"Fullner, Christoph","last_name":"Fullner","first_name":"Christoph"},{"last_name":"Marin-Palomo","first_name":"Pablo","full_name":"Marin-Palomo, Pablo"},{"first_name":"Alireza","last_name":"Tabatabaei Mashayekh","full_name":"Tabatabaei Mashayekh, Alireza"},{"full_name":"Dipta Das, Arka","first_name":"Arka","last_name":"Dipta Das"},{"id":"44271","first_name":"Maxim","orcid":"https://orcid.org/0000-0003-2699-9839","last_name":"Weizel","full_name":"Weizel, Maxim"},{"full_name":"Gudyriev, Sergiy","first_name":"Sergiy","last_name":"Gudyriev"},{"first_name":"Wolfgang","last_name":"Freude","full_name":"Freude, Wolfgang"},{"first_name":"Sebastian","last_name":"Randel","full_name":"Randel, Sebastian"},{"id":"37144","last_name":"Scheytt","orcid":"https://orcid.org/0000-0002-5950-6618","first_name":"J. Christoph","full_name":"Scheytt, J. Christoph"},{"full_name":"Witzens, Jeremy","last_name":"Witzens","first_name":"Jeremy"},{"first_name":"Christian","last_name":"Koos","full_name":"Koos, Christian"}],"publication_status":"published","date_updated":"2025-10-30T09:14:55Z","language":[{"iso":"eng"}],"doi":"10.1109/jlt.2021.3130764","publication":"Journal of Lightwave Technology","abstract":[{"lang":"eng","text":"We demonstrate an optical arbitrary waveform measurement (OAWM) system that exploits a bank of silicon photonic (SiP) frequency-tunable coupled-resonator optical waveguide (CROW) filters for gapless spectral slicing of broadband optical signals. The spectral slices are coherently detected using a frequency comb as a multi-wavelength local oscillator (LO) and stitched together by digital signal processing (DSP). For high-quality signal reconstruction, we have implemented a maximum-ratio combining (MRC) technique based on precise calibration of the complex-valued opto-electronic transfer functions of all detection paths. In a proof-of-concept experiment, we demonstrate the viability of the scheme by implementing a four-channel system that offers an overall detection bandwidth of 140 GHz. Exploiting a femtosecond laser with precisely known pulse shape for calibration along with dynamic amplitude and phase estimation, we reconstruct 100 GBd QPSK, 16QAM and 64QAM optical data signals. The reconstructed signals show improved quality compared to that obtained with a single high-speed intradyne receiver, while the electronic bandwidth requirements of the individual coherent receivers are greatly reduced."}],"date_created":"2022-01-10T13:43:46Z","type":"journal_article","keyword":["Atomic and Molecular Physics","and Optics"],"department":[{"_id":"58"},{"_id":"230"}]},{"status":"public","_id":"29211","publisher":"Institute of Electrical and Electronics Engineers (IEEE)","page":"209-221","volume":1,"user_id":"44271","citation":{"short":"A. Zazzi, J. Müller, M. Weizel, J. Koch, D. Fang, A. Moscoso-Martir, A. Tabatabaei Mashayekh, A.D. Das, D. Drays, F. Merget, F.X. Kartner, S. Pachnicke, C. Koos, J.C. Scheytt, J. Witzens, IEEE Open Journal of the Solid-State Circuits Society 1 (2021) 209–221.","chicago":"Zazzi, Andrea, Juliana Müller, Maxim Weizel, Jonas Koch, Dengyang Fang, Alvaro Moscoso-Martir, Ali Tabatabaei Mashayekh, et al. “Optically Enabled ADCs and Application to Optical Communications.” <i>IEEE Open Journal of the Solid-State Circuits Society</i> 1 (2021): 209–21. <a href=\"https://doi.org/10.1109/ojsscs.2021.3110943\">https://doi.org/10.1109/ojsscs.2021.3110943</a>.","ieee":"A. Zazzi <i>et al.</i>, “Optically Enabled ADCs and Application to Optical Communications,” <i>IEEE Open Journal of the Solid-State Circuits Society</i>, vol. 1, pp. 209–221, 2021, doi: <a href=\"https://doi.org/10.1109/ojsscs.2021.3110943\">10.1109/ojsscs.2021.3110943</a>.","apa":"Zazzi, A., Müller, J., Weizel, M., Koch, J., Fang, D., Moscoso-Martir, A., Tabatabaei Mashayekh, A., Das, A. D., Drays, D., Merget, F., Kartner, F. X., Pachnicke, S., Koos, C., Scheytt, J. C., &#38; Witzens, J. (2021). Optically Enabled ADCs and Application to Optical Communications. <i>IEEE Open Journal of the Solid-State Circuits Society</i>, <i>1</i>, 209–221. <a href=\"https://doi.org/10.1109/ojsscs.2021.3110943\">https://doi.org/10.1109/ojsscs.2021.3110943</a>","bibtex":"@article{Zazzi_Müller_Weizel_Koch_Fang_Moscoso-Martir_Tabatabaei Mashayekh_Das_Drays_Merget_et al._2021, title={Optically Enabled ADCs and Application to Optical Communications}, volume={1}, DOI={<a href=\"https://doi.org/10.1109/ojsscs.2021.3110943\">10.1109/ojsscs.2021.3110943</a>}, journal={IEEE Open Journal of the Solid-State Circuits Society}, publisher={Institute of Electrical and Electronics Engineers (IEEE)}, author={Zazzi, Andrea and Müller, Juliana and Weizel, Maxim and Koch, Jonas and Fang, Dengyang and Moscoso-Martir, Alvaro and Tabatabaei Mashayekh, Ali and Das, Arka D. and Drays, Daniel and Merget, Florian and et al.}, year={2021}, pages={209–221} }","ama":"Zazzi A, Müller J, Weizel M, et al. Optically Enabled ADCs and Application to Optical Communications. <i>IEEE Open Journal of the Solid-State Circuits Society</i>. 2021;1:209-221. doi:<a href=\"https://doi.org/10.1109/ojsscs.2021.3110943\">10.1109/ojsscs.2021.3110943</a>","mla":"Zazzi, Andrea, et al. “Optically Enabled ADCs and Application to Optical Communications.” <i>IEEE Open Journal of the Solid-State Circuits Society</i>, vol. 1, Institute of Electrical and Electronics Engineers (IEEE), 2021, pp. 209–21, doi:<a href=\"https://doi.org/10.1109/ojsscs.2021.3110943\">10.1109/ojsscs.2021.3110943</a>."},"project":[{"name":"SPP 2111; TP: Ultrabreitbandiger Photonisch-Elektronischer Analog-Digital-Wandler (PACE) - Phase 2","_id":"303"}],"publication_identifier":{"issn":["2644-1349"]},"author":[{"full_name":"Zazzi, Andrea","first_name":"Andrea","last_name":"Zazzi"},{"full_name":"Müller, Juliana","last_name":"Müller","first_name":"Juliana"},{"first_name":"Maxim","orcid":"https://orcid.org/0000-0003-2699-9839","last_name":"Weizel","full_name":"Weizel, Maxim","id":"44271"},{"full_name":"Koch, Jonas","last_name":"Koch","first_name":"Jonas"},{"full_name":"Fang, Dengyang","last_name":"Fang","first_name":"Dengyang"},{"first_name":"Alvaro","last_name":"Moscoso-Martir","full_name":"Moscoso-Martir, Alvaro"},{"full_name":"Tabatabaei Mashayekh, Ali","last_name":"Tabatabaei Mashayekh","first_name":"Ali"},{"full_name":"Das, Arka D.","last_name":"Das","first_name":"Arka D."},{"full_name":"Drays, Daniel","last_name":"Drays","first_name":"Daniel"},{"first_name":"Florian","last_name":"Merget","full_name":"Merget, Florian"},{"full_name":"Kartner, Franz X.","last_name":"Kartner","first_name":"Franz X."},{"full_name":"Pachnicke, Stephan","first_name":"Stephan","last_name":"Pachnicke"},{"full_name":"Koos, Christian","first_name":"Christian","last_name":"Koos"},{"id":"37144","first_name":"J. Christoph","last_name":"Scheytt","orcid":"https://orcid.org/0000-0002-5950-6618","full_name":"Scheytt, J. Christoph"},{"full_name":"Witzens, Jeremy","first_name":"Jeremy","last_name":"Witzens"}],"year":"2021","title":"Optically Enabled ADCs and Application to Optical Communications","intvolume":"         1","date_updated":"2025-10-30T09:14:19Z","publication_status":"published","language":[{"iso":"eng"}],"doi":"10.1109/ojsscs.2021.3110943","publication":"IEEE Open Journal of the Solid-State Circuits Society","abstract":[{"text":"Electrical-optical signal processing has been shown to be a promising path to overcome the limitations of state-of-the-art all-electrical data converters. In addition to ultra-broadband signal processing, it allows leveraging ultra-low jitter mode-locked lasers and thus increasing the aperture jitter limited effective number of bits at high analog signal frequencies. In this paper, we review our recent progress towards optically enabled time- and frequency-interleaved analog-to-digital converters, as well as their monolithic integration in electronic-photonic integrated circuits. For signal frequencies up to 65 GHz, an optoelectronic track-and-hold amplifier based on the source-emitter-follower architecture is shown as a power efficient approach in optically enabled BiCMOS technology. At higher signal frequencies, integrated photonic filters enable signal slicing in the frequency domain and further scaling of the conversion bandwidth, with the reconstruction of a 140 GHz optical signal being shown. We further show how such optically enabled data converter architectures can be applied to a nonlinear Fourier transform based integrated transceiver in particular and discuss their applicability to broadband optical links in general.","lang":"eng"}],"date_created":"2022-01-10T13:57:36Z","department":[{"_id":"58"},{"_id":"230"}],"type":"journal_article"},{"citation":{"mla":"Fang, Dengyang, et al. “Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform.” <i>OSA Technical Digest</i>, 2021, doi:<a href=\"https://doi.org/10.1109/JLT.2021.3130764\">10.1109/JLT.2021.3130764</a>.","ama":"Fang D, Zazzi A, Müller J, et al. Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform. <i>OSA Technical Digest</i>. Published online 2021. doi:<a href=\"https://doi.org/10.1109/JLT.2021.3130764\">10.1109/JLT.2021.3130764</a>","bibtex":"@article{Fang_Zazzi_Müller_Daniel_Füllner_Marin-Palomo_Mashayekh_Das_Weizel_Gudyriev_et al._2021, title={Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform}, DOI={<a href=\"https://doi.org/10.1109/JLT.2021.3130764\">10.1109/JLT.2021.3130764</a>}, journal={OSA Technical Digest}, author={Fang, Dengyang and Zazzi, Andrea and Müller, Juliana and Daniel, Drayß and Füllner, Christoph and Marin-Palomo, Pablo and Mashayekh, Ali Tabatabaei and Das, Arka Dipta and Weizel, Maxim and Gudyriev, Sergiy and et al.}, year={2021} }","apa":"Fang, D., Zazzi, A., Müller, J., Daniel, D., Füllner, C., Marin-Palomo, P., Mashayekh, A. T., Das, A. D., Weizel, M., Gudyriev, S., Freude, W., Randel, S., Scheytt, J. C., Witzens, J., &#38; Koos, C. (2021). Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform. <i>OSA Technical Digest</i>. <a href=\"https://doi.org/10.1109/JLT.2021.3130764\">https://doi.org/10.1109/JLT.2021.3130764</a>","ieee":"D. Fang <i>et al.</i>, “Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform,” <i>OSA Technical Digest</i>, 2021, doi: <a href=\"https://doi.org/10.1109/JLT.2021.3130764\">10.1109/JLT.2021.3130764</a>.","chicago":"Fang, Dengyang, Andrea Zazzi, Juliana Müller, Drayß Daniel, Christoph Füllner, Pablo Marin-Palomo, Ali Tabatabaei Mashayekh, et al. “Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform.” <i>OSA Technical Digest</i>, 2021. <a href=\"https://doi.org/10.1109/JLT.2021.3130764\">https://doi.org/10.1109/JLT.2021.3130764</a>.","short":"D. Fang, A. Zazzi, J. Müller, D. Daniel, C. Füllner, P. Marin-Palomo, A.T. Mashayekh, A.D. Das, M. Weizel, S. Gudyriev, W. Freude, S. Randel, J.C. Scheytt, J. Witzens, C. Koos, OSA Technical Digest (2021)."},"publication":"OSA Technical Digest","project":[{"_id":"303","name":"SPP 2111; TP: Ultrabreitbandiger Photonisch-Elektronischer Analog-Digital-Wandler (PACE) - Phase 2"}],"date_created":"2022-01-10T14:29:23Z","department":[{"_id":"58"},{"_id":"230"}],"type":"journal_article","publication_identifier":{"isbn":["978-1-943580-86-6"]},"author":[{"first_name":"Dengyang","last_name":"Fang","full_name":"Fang, Dengyang"},{"last_name":"Zazzi","first_name":"Andrea","full_name":"Zazzi, Andrea"},{"full_name":"Müller, Juliana","first_name":"Juliana","last_name":"Müller"},{"last_name":"Daniel","first_name":"Drayß","full_name":"Daniel, Drayß"},{"last_name":"Füllner","first_name":"Christoph","full_name":"Füllner, Christoph"},{"last_name":"Marin-Palomo","first_name":"Pablo","full_name":"Marin-Palomo, Pablo"},{"full_name":"Mashayekh, Ali Tabatabaei","last_name":"Mashayekh","first_name":"Ali Tabatabaei"},{"full_name":"Das, Arka Dipta","last_name":"Das","first_name":"Arka Dipta"},{"orcid":"https://orcid.org/0000-0003-2699-9839","first_name":"Maxim","last_name":"Weizel","full_name":"Weizel, Maxim","id":"44271"},{"last_name":"Gudyriev","first_name":"Sergiy","full_name":"Gudyriev, Sergiy"},{"full_name":"Freude, Wolfgang","last_name":"Freude","first_name":"Wolfgang"},{"full_name":"Randel, Sebastian","first_name":"Sebastian","last_name":"Randel"},{"full_name":"Scheytt, J. Christoph","first_name":"J. Christoph","last_name":"Scheytt","orcid":"https://orcid.org/0000-0002-5950-6618","id":"37144"},{"first_name":"Jeremy","last_name":"Witzens","full_name":"Witzens, Jeremy"},{"first_name":"Christian","last_name":"Koos","full_name":"Koos, Christian"}],"year":"2021","status":"public","title":"Optical Arbitrary Waveform Measurement (OAWM) on the Silicon Photonic Platform","date_updated":"2025-10-30T09:14:37Z","_id":"29212","language":[{"iso":"eng"}],"doi":"10.1109/JLT.2021.3130764","user_id":"44271"},{"article_number":"16312","language":[{"iso":"eng"}],"_id":"23476","user_id":"44271","doi":"10.1364/oe.425710","title":"Optically clocked switched-emitter-follower THA in a photonic SiGe BiCMOS technology","status":"public","year":"2021","author":[{"id":"44271","last_name":"Weizel","orcid":"https://orcid.org/0000-0003-2699-9839","first_name":"Maxim","full_name":"Weizel, Maxim"},{"first_name":"J. Christoph","last_name":"Scheytt","orcid":"https://orcid.org/0000-0002-5950-6618","full_name":"Scheytt, J. Christoph","id":"37144"},{"first_name":"Franz X.","last_name":"Kärtner","full_name":"Kärtner, Franz X."},{"first_name":"Jeremy","last_name":"Witzens","full_name":"Witzens, Jeremy"}],"publication_identifier":{"issn":["1094-4087"]},"publication_status":"published","date_updated":"2025-10-30T09:22:22Z","date_created":"2021-08-24T08:49:56Z","type":"journal_article","department":[{"_id":"58"},{"_id":"230"}],"publication":"Optics Express","citation":{"bibtex":"@article{Weizel_Scheytt_Kärtner_Witzens_2021, title={Optically clocked switched-emitter-follower THA in a photonic SiGe BiCMOS technology}, DOI={<a href=\"https://doi.org/10.1364/oe.425710\">10.1364/oe.425710</a>}, number={16312}, journal={Optics Express}, author={Weizel, Maxim and Scheytt, J. Christoph and Kärtner, Franz X. and Witzens, Jeremy}, year={2021} }","ama":"Weizel M, Scheytt JC, Kärtner FX, Witzens J. Optically clocked switched-emitter-follower THA in a photonic SiGe BiCMOS technology. <i>Optics Express</i>. Published online 2021. doi:<a href=\"https://doi.org/10.1364/oe.425710\">10.1364/oe.425710</a>","mla":"Weizel, Maxim, et al. “Optically Clocked Switched-Emitter-Follower THA in a Photonic SiGe BiCMOS Technology.” <i>Optics Express</i>, 16312, 2021, doi:<a href=\"https://doi.org/10.1364/oe.425710\">10.1364/oe.425710</a>.","short":"M. Weizel, J.C. Scheytt, F.X. Kärtner, J. Witzens, Optics Express (2021).","chicago":"Weizel, Maxim, J. Christoph Scheytt, Franz X. Kärtner, and Jeremy Witzens. “Optically Clocked Switched-Emitter-Follower THA in a Photonic SiGe BiCMOS Technology.” <i>Optics Express</i>, 2021. <a href=\"https://doi.org/10.1364/oe.425710\">https://doi.org/10.1364/oe.425710</a>.","ieee":"M. Weizel, J. C. Scheytt, F. X. Kärtner, and J. Witzens, “Optically clocked switched-emitter-follower THA in a photonic SiGe BiCMOS technology,” <i>Optics Express</i>, Art. no. 16312, 2021, doi: <a href=\"https://doi.org/10.1364/oe.425710\">10.1364/oe.425710</a>.","apa":"Weizel, M., Scheytt, J. C., Kärtner, F. X., &#38; Witzens, J. (2021). Optically clocked switched-emitter-follower THA in a photonic SiGe BiCMOS technology. <i>Optics Express</i>, Article 16312. <a href=\"https://doi.org/10.1364/oe.425710\">https://doi.org/10.1364/oe.425710</a>"},"project":[{"_id":"303","name":"SPP 2111; TP: Ultrabreitbandiger Photonisch-Elektronischer Analog-Digital-Wandler (PACE) - Phase 2"},{"_id":"298","name":"FOR 2863: Metrologie für die THz Kommunikation (Meteracom)"},{"name":"FOR 2863:  Metrologie für die THz Kommunikation, TP: Ultrabreitbandige Abtastung","_id":"308"}]},{"language":[{"iso":"eng"}],"doi":"10.1007/s10212-021-00571-z","author":[{"first_name":"Anne","last_name":"Scheunemann","full_name":"Scheunemann, Anne"},{"last_name":"Schnettler","first_name":"Theresa","full_name":"Schnettler, Theresa"},{"first_name":"Julia","last_name":"Bobe","full_name":"Bobe, Julia"},{"full_name":"Fries, Stefan","last_name":"Fries","first_name":"Stefan"},{"full_name":"Grunschel, Carola","last_name":"Grunschel","first_name":"Carola"}],"publication_identifier":{"issn":["0256-2928","1878-5174"]},"title":"A longitudinal analysis of the reciprocal relationship between academic procrastination, study satisfaction, and dropout intentions in higher education","year":"2021","intvolume":"        37","publication_status":"published","date_updated":"2025-11-04T07:54:31Z","date_created":"2025-02-21T08:42:51Z","type":"journal_article","issue":"4","publication":"European Journal of Psychology of Education","abstract":[{"text":"<jats:title>Abstract</jats:title><jats:p>Student dropout is a multi-causal process. Different theoretical models on student dropout consider dysfunctional study behavior (e.g., academic procrastination) and low study satisfaction as possible determinants of students’ dropout intentions during their university studies. However, these models neglect contemporary conceptualizations that assume reverse relationships between dropout intentions and other determinants of the dropout process. Until now, empirical evidence on these assumptions is scant. The present three-wave longitudinal study explored the reciprocal relationships between academic procrastination, study satisfaction, and dropout intentions over one semester. To this end, we used data of <jats:italic>N</jats:italic> = 326 undergraduate students enrolled in mathematics and law. Our latent cross-lagged panel model replicated existing empirical cross-sectional findings between the variables (i.e., academic procrastination, study satisfaction, and dropout intentions). Regarding the longitudinal relations, as expected, the cross-lagged effects showed that higher dropout intentions significantly related to subsequent higher academic procrastination and lower study satisfaction. Unexpectedly, academic procrastination did not significantly relate to subsequent dropout intentions. Additionally, higher study satisfaction significantly associated with subsequent higher dropout intentions—possibly due to unfulfilled expectations. Further, higher study satisfaction significantly related to subsequent higher procrastination—possibly due to more confidence among satisfied students. Our results broaden the view on dropout intentions as part of the dynamic interplay of student dropout determinants and the need to refine dropout models’ assumptions accordingly. Practically, realistic expectations seem important to reduce dropout intentions. Further, student counselors should have a closer look at the reasons for academic procrastination to develop individual solutions for this dysfunctional behavior.</jats:p>","lang":"eng"}],"_id":"58746","publisher":"Springer Science and Business Media LLC","page":"1141-1164","volume":37,"user_id":"81770","status":"public","citation":{"apa":"Scheunemann, A., Schnettler, T., Bobe, J., Fries, S., &#38; Grunschel, C. (2021). A longitudinal analysis of the reciprocal relationship between academic procrastination, study satisfaction, and dropout intentions in higher education. <i>European Journal of Psychology of Education</i>, <i>37</i>(4), 1141–1164. <a href=\"https://doi.org/10.1007/s10212-021-00571-z\">https://doi.org/10.1007/s10212-021-00571-z</a>","ieee":"A. Scheunemann, T. Schnettler, J. Bobe, S. Fries, and C. Grunschel, “A longitudinal analysis of the reciprocal relationship between academic procrastination, study satisfaction, and dropout intentions in higher education,” <i>European Journal of Psychology of Education</i>, vol. 37, no. 4, pp. 1141–1164, 2021, doi: <a href=\"https://doi.org/10.1007/s10212-021-00571-z\">10.1007/s10212-021-00571-z</a>.","chicago":"Scheunemann, Anne, Theresa Schnettler, Julia Bobe, Stefan Fries, and Carola Grunschel. “A Longitudinal Analysis of the Reciprocal Relationship between Academic Procrastination, Study Satisfaction, and Dropout Intentions in Higher Education.” <i>European Journal of Psychology of Education</i> 37, no. 4 (2021): 1141–64. <a href=\"https://doi.org/10.1007/s10212-021-00571-z\">https://doi.org/10.1007/s10212-021-00571-z</a>.","short":"A. Scheunemann, T. Schnettler, J. Bobe, S. Fries, C. Grunschel, European Journal of Psychology of Education 37 (2021) 1141–1164.","mla":"Scheunemann, Anne, et al. “A Longitudinal Analysis of the Reciprocal Relationship between Academic Procrastination, Study Satisfaction, and Dropout Intentions in Higher Education.” <i>European Journal of Psychology of Education</i>, vol. 37, no. 4, Springer Science and Business Media LLC, 2021, pp. 1141–64, doi:<a href=\"https://doi.org/10.1007/s10212-021-00571-z\">10.1007/s10212-021-00571-z</a>.","ama":"Scheunemann A, Schnettler T, Bobe J, Fries S, Grunschel C. A longitudinal analysis of the reciprocal relationship between academic procrastination, study satisfaction, and dropout intentions in higher education. <i>European Journal of Psychology of Education</i>. 2021;37(4):1141-1164. doi:<a href=\"https://doi.org/10.1007/s10212-021-00571-z\">10.1007/s10212-021-00571-z</a>","bibtex":"@article{Scheunemann_Schnettler_Bobe_Fries_Grunschel_2021, title={A longitudinal analysis of the reciprocal relationship between academic procrastination, study satisfaction, and dropout intentions in higher education}, volume={37}, DOI={<a href=\"https://doi.org/10.1007/s10212-021-00571-z\">10.1007/s10212-021-00571-z</a>}, number={4}, journal={European Journal of Psychology of Education}, publisher={Springer Science and Business Media LLC}, author={Scheunemann, Anne and Schnettler, Theresa and Bobe, Julia and Fries, Stefan and Grunschel, Carola}, year={2021}, pages={1141–1164} }"}},{"date_created":"2023-01-08T16:23:59Z","department":[{"_id":"31"}],"type":"journal_article","citation":{"ama":"Korsmeier T, Bobe J, Klingsieck KB. Prokrastination bei Studierenden verringern durch Anwendung eines Ratgebers im Gruppensetting. <i>Zeitschrift für Beratung und Studium</i>. 2021;16:22-27.","bibtex":"@article{Korsmeier_Bobe_Klingsieck_2021, title={Prokrastination bei Studierenden verringern durch Anwendung eines Ratgebers im Gruppensetting}, volume={16}, journal={Zeitschrift für Beratung und Studium}, author={Korsmeier, Theresa  and Bobe, Julia and Klingsieck, Katrin B.}, year={2021}, pages={22–27} }","mla":"Korsmeier, Theresa, et al. “Prokrastination Bei Studierenden Verringern Durch Anwendung Eines Ratgebers Im Gruppensetting.” <i>Zeitschrift Für Beratung Und Studium</i>, vol. 16, 2021, pp. 22–27.","short":"T. Korsmeier, J. Bobe, K.B. Klingsieck, Zeitschrift Für Beratung Und Studium 16 (2021) 22–27.","chicago":"Korsmeier, Theresa , Julia Bobe, and Katrin B. Klingsieck. “Prokrastination Bei Studierenden Verringern Durch Anwendung Eines Ratgebers Im Gruppensetting.” <i>Zeitschrift Für Beratung Und Studium</i> 16 (2021): 22–27.","apa":"Korsmeier, T., Bobe, J., &#38; Klingsieck, K. B. (2021). Prokrastination bei Studierenden verringern durch Anwendung eines Ratgebers im Gruppensetting. <i>Zeitschrift Für Beratung Und Studium</i>, <i>16</i>, 22–27.","ieee":"T. Korsmeier, J. Bobe, and K. B. Klingsieck, “Prokrastination bei Studierenden verringern durch Anwendung eines Ratgebers im Gruppensetting,” <i>Zeitschrift für Beratung und Studium</i>, vol. 16, pp. 22–27, 2021."},"publication":"Zeitschrift für Beratung und Studium","extern":"1","_id":"35421","language":[{"iso":"eng"}],"page":"22-27","volume":16,"user_id":"36716","author":[{"full_name":"Korsmeier, Theresa ","first_name":"Theresa ","last_name":"Korsmeier"},{"last_name":"Bobe","first_name":"Julia","full_name":"Bobe, Julia","id":"81770"},{"id":"36716","first_name":"Katrin B.","last_name":"Klingsieck","full_name":"Klingsieck, Katrin B."}],"title":"Prokrastination bei Studierenden verringern durch Anwendung eines Ratgebers im Gruppensetting","year":"2021","status":"public","intvolume":"        16","date_updated":"2025-11-04T07:54:55Z"},{"language":[{"iso":"eng"}],"doi":"10.1002/nadc.20214105947","year":"2021","title":"Organische Chemie","publication_identifier":{"issn":["1439-9598","1868-0054"]},"author":[{"id":"53339","full_name":"Paradies, Jan","first_name":"Jan","last_name":"Paradies","orcid":"0000-0002-3698-668X"},{"full_name":"Andexer, Jennifer","first_name":"Jennifer","last_name":"Andexer"},{"last_name":"Beifuss","first_name":"Uwe","full_name":"Beifuss, Uwe"},{"full_name":"Beuerle, Florian","first_name":"Florian","last_name":"Beuerle"},{"full_name":"Brasholz, Malte","last_name":"Brasholz","first_name":"Malte"},{"full_name":"Breinbauer, Rolf","first_name":"Rolf","last_name":"Breinbauer"},{"last_name":"Ernst","first_name":"Martin","full_name":"Ernst, Martin"},{"full_name":"Ganardi, Ruth","last_name":"Ganardi","first_name":"Ruth"},{"full_name":"Gulder, Tobias A. M.","first_name":"Tobias A. M.","last_name":"Gulder"},{"last_name":"Hüttel","first_name":"Wolfgang","full_name":"Hüttel, Wolfgang"},{"full_name":"Kath‐Schorr, Stephanie","last_name":"Kath‐Schorr","first_name":"Stephanie"},{"last_name":"Körber","first_name":"Karsten","full_name":"Körber, Karsten"},{"first_name":"Markus","last_name":"Kordes","full_name":"Kordes, Markus"},{"last_name":"Lehmann","first_name":"Matthias","full_name":"Lehmann, Matthias"},{"first_name":"Thomas","last_name":"Lindel","full_name":"Lindel, Thomas"},{"full_name":"Luy, Burkhard","last_name":"Luy","first_name":"Burkhard"},{"full_name":"Mück‐Lichtenfeld, Christian","first_name":"Christian","last_name":"Mück‐Lichtenfeld"},{"last_name":"Muhle‐Goll","first_name":"Claudia","full_name":"Muhle‐Goll, Claudia"},{"first_name":"Jochen","last_name":"Niemeyer","full_name":"Niemeyer, Jochen"},{"first_name":"Roland","last_name":"Pfau","full_name":"Pfau, Roland"},{"first_name":"Jörg","last_name":"Pietruszka","full_name":"Pietruszka, Jörg"},{"full_name":"Röckl, Johannes L.","first_name":"Johannes L.","last_name":"Röckl"},{"full_name":"Schaschke, Norbert","first_name":"Norbert","last_name":"Schaschke"},{"full_name":"Senge, Mathias O.","first_name":"Mathias O.","last_name":"Senge"},{"full_name":"Straub, Bernd F.","last_name":"Straub","first_name":"Bernd F."},{"last_name":"Waldvogel","first_name":"Siegfried R.","full_name":"Waldvogel, Siegfried R."},{"orcid":"0000-0001-9025-3244","first_name":"Thomas","last_name":"Werner","full_name":"Werner, Thomas","id":"89271"},{"full_name":"Werz, Daniel B.","last_name":"Werz","first_name":"Daniel B."},{"first_name":"Christian","last_name":"Winter","full_name":"Winter, Christian"}],"publication_status":"published","date_updated":"2025-11-10T08:02:44Z","intvolume":"        69","date_created":"2023-01-22T20:28:35Z","type":"journal_article","keyword":["General Chemical Engineering","General Chemistry"],"department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"issue":"3","publication":"Nachrichten aus der Chemie","page":"38-68","_id":"37947","publisher":"Wiley","user_id":"89271","volume":69,"status":"public","citation":{"chicago":"Paradies, Jan, Jennifer Andexer, Uwe Beifuss, Florian Beuerle, Malte Brasholz, Rolf Breinbauer, Martin Ernst, et al. “Organische Chemie.” <i>Nachrichten Aus Der Chemie</i> 69, no. 3 (2021): 38–68. <a href=\"https://doi.org/10.1002/nadc.20214105947\">https://doi.org/10.1002/nadc.20214105947</a>.","short":"J. Paradies, J. Andexer, U. Beifuss, F. Beuerle, M. Brasholz, R. Breinbauer, M. Ernst, R. Ganardi, T.A.M. Gulder, W. Hüttel, S. Kath‐Schorr, K. Körber, M. Kordes, M. Lehmann, T. Lindel, B. Luy, C. Mück‐Lichtenfeld, C. Muhle‐Goll, J. Niemeyer, R. Pfau, J. Pietruszka, J.L. Röckl, N. Schaschke, M.O. Senge, B.F. Straub, S.R. Waldvogel, T. Werner, D.B. Werz, C. Winter, Nachrichten Aus Der Chemie 69 (2021) 38–68.","apa":"Paradies, J., Andexer, J., Beifuss, U., Beuerle, F., Brasholz, M., Breinbauer, R., Ernst, M., Ganardi, R., Gulder, T. A. M., Hüttel, W., Kath‐Schorr, S., Körber, K., Kordes, M., Lehmann, M., Lindel, T., Luy, B., Mück‐Lichtenfeld, C., Muhle‐Goll, C., Niemeyer, J., … Winter, C. (2021). Organische Chemie. <i>Nachrichten Aus Der Chemie</i>, <i>69</i>(3), 38–68. <a href=\"https://doi.org/10.1002/nadc.20214105947\">https://doi.org/10.1002/nadc.20214105947</a>","ieee":"J. Paradies <i>et al.</i>, “Organische Chemie,” <i>Nachrichten aus der Chemie</i>, vol. 69, no. 3, pp. 38–68, 2021, doi: <a href=\"https://doi.org/10.1002/nadc.20214105947\">10.1002/nadc.20214105947</a>.","ama":"Paradies J, Andexer J, Beifuss U, et al. Organische Chemie. <i>Nachrichten aus der Chemie</i>. 2021;69(3):38-68. doi:<a href=\"https://doi.org/10.1002/nadc.20214105947\">10.1002/nadc.20214105947</a>","bibtex":"@article{Paradies_Andexer_Beifuss_Beuerle_Brasholz_Breinbauer_Ernst_Ganardi_Gulder_Hüttel_et al._2021, title={Organische Chemie}, volume={69}, DOI={<a href=\"https://doi.org/10.1002/nadc.20214105947\">10.1002/nadc.20214105947</a>}, number={3}, journal={Nachrichten aus der Chemie}, publisher={Wiley}, author={Paradies, Jan and Andexer, Jennifer and Beifuss, Uwe and Beuerle, Florian and Brasholz, Malte and Breinbauer, Rolf and Ernst, Martin and Ganardi, Ruth and Gulder, Tobias A. M. and Hüttel, Wolfgang and et al.}, year={2021}, pages={38–68} }","mla":"Paradies, Jan, et al. “Organische Chemie.” <i>Nachrichten Aus Der Chemie</i>, vol. 69, no. 3, Wiley, 2021, pp. 38–68, doi:<a href=\"https://doi.org/10.1002/nadc.20214105947\">10.1002/nadc.20214105947</a>."}},{"citation":{"chicago":"Hu, Yuya, Zhihong Wei, Anna Frey, Christoph Kubis, Chang‐Yue Ren, Anke Spannenberg, Haijun Jiao, and Thomas Werner. “Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts.” <i>ChemSusChem</i> 14, no. 1 (2021): 363–72. <a href=\"https://doi.org/10.1002/cssc.202002267\">https://doi.org/10.1002/cssc.202002267</a>.","short":"Y. Hu, Z. Wei, A. Frey, C. Kubis, C. Ren, A. Spannenberg, H. Jiao, T. Werner, ChemSusChem 14 (2021) 363–372.","apa":"Hu, Y., Wei, Z., Frey, A., Kubis, C., Ren, C., Spannenberg, A., Jiao, H., &#38; Werner, T. (2021). Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts. <i>ChemSusChem</i>, <i>14</i>(1), 363–372. <a href=\"https://doi.org/10.1002/cssc.202002267\">https://doi.org/10.1002/cssc.202002267</a>","ieee":"Y. Hu <i>et al.</i>, “Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts,” <i>ChemSusChem</i>, vol. 14, no. 1, pp. 363–372, 2021, doi: <a href=\"https://doi.org/10.1002/cssc.202002267\">10.1002/cssc.202002267</a>.","ama":"Hu Y, Wei Z, Frey A, et al. Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts. <i>ChemSusChem</i>. 2021;14(1):363-372. doi:<a href=\"https://doi.org/10.1002/cssc.202002267\">10.1002/cssc.202002267</a>","bibtex":"@article{Hu_Wei_Frey_Kubis_Ren_Spannenberg_Jiao_Werner_2021, title={Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts}, volume={14}, DOI={<a href=\"https://doi.org/10.1002/cssc.202002267\">10.1002/cssc.202002267</a>}, number={1}, journal={ChemSusChem}, publisher={Wiley}, author={Hu, Yuya and Wei, Zhihong and Frey, Anna and Kubis, Christoph and Ren, Chang‐Yue and Spannenberg, Anke and Jiao, Haijun and Werner, Thomas}, year={2021}, pages={363–372} }","mla":"Hu, Yuya, et al. “Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts.” <i>ChemSusChem</i>, vol. 14, no. 1, Wiley, 2021, pp. 363–72, doi:<a href=\"https://doi.org/10.1002/cssc.202002267\">10.1002/cssc.202002267</a>."},"status":"public","_id":"37950","publisher":"Wiley","page":"363-372","volume":14,"user_id":"89271","publication":"ChemSusChem","issue":"1","extern":"1","date_created":"2023-01-22T20:34:17Z","department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"keyword":["T1"],"type":"journal_article","publication_identifier":{"issn":["1864-5631","1864-564X"]},"author":[{"full_name":"Hu, Yuya","first_name":"Yuya","last_name":"Hu"},{"last_name":"Wei","first_name":"Zhihong","full_name":"Wei, Zhihong"},{"first_name":"Anna","last_name":"Frey","full_name":"Frey, Anna"},{"first_name":"Christoph","last_name":"Kubis","full_name":"Kubis, Christoph"},{"full_name":"Ren, Chang‐Yue","first_name":"Chang‐Yue","last_name":"Ren"},{"full_name":"Spannenberg, Anke","first_name":"Anke","last_name":"Spannenberg"},{"first_name":"Haijun","last_name":"Jiao","full_name":"Jiao, Haijun"},{"full_name":"Werner, Thomas","first_name":"Thomas","last_name":"Werner","orcid":"0000-0001-9025-3244","id":"89271"}],"year":"2021","title":"Catalytic, Kinetic, and Mechanistic Insights into the Fixation of CO<sub>2</sub> with Epoxides Catalyzed by Phenol‐Functionalized Phosphonium Salts","intvolume":"        14","publication_status":"published","date_updated":"2025-11-10T08:04:27Z","language":[{"iso":"eng"}],"doi":"10.1002/cssc.202002267"},{"date_updated":"2025-11-10T08:47:47Z","publication_status":"published","intvolume":"        53","title":"Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones","year":"2021","author":[{"id":"89271","last_name":"Werner","first_name":"Thomas","orcid":"0000-0001-9025-3244","full_name":"Werner, Thomas"},{"full_name":"Grandane, Aiga","last_name":"Grandane","first_name":"Aiga"},{"last_name":"Pudnika","first_name":"Linda","full_name":"Pudnika, Linda"},{"full_name":"Domraceva, Ilona","last_name":"Domraceva","first_name":"Ilona"},{"last_name":"Zalubovskis","first_name":"Raivis","full_name":"Zalubovskis, Raivis"}],"publication_identifier":{"issn":["0039-7881","1437-210X"]},"doi":"10.1055/a-1509-6078","language":[{"iso":"eng"}],"abstract":[{"text":"<jats:title>Abstract</jats:title><jats:p>The facile synthesis of highly functionalized building blocks with potential biological activity is of great interest to medicinal chemistry. The benzoxepinone core structures commonly exhibit biological activity. Thus, a short and efficient synthetic route towards benzoxepine containing scaffold, which enables late stage modification was developed. Namely, base-free catalytic Wittig reactions enabled the synthesis of bromobenzoxepinones from readily available starting materials. Subsequent, Suzuki–Miyaura and Stille reactions proved to be suitable methods to access a variety of benzoxepinone diaryl derivatives by late stage modification in only three steps. This three-step reaction sequence is suitable for high throughput applications and gives facile access to highly complex molecular structures, which are suitable for further functionalization. The antiproliferative properties of selected arylbenzoxepinones­ were tested in vitro on monolayer tumor cell line A549. Notably, in this initial screening, these compounds were found to be active in the micromolar range.</jats:p>","lang":"eng"}],"issue":"19","publication":"Synthesis","keyword":["T2","T4","CSSD"],"type":"journal_article","department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"date_created":"2023-01-22T20:27:34Z","status":"public","user_id":"89271","volume":53,"page":"3545-3554","publisher":"Georg Thieme Verlag KG","_id":"37946","citation":{"mla":"Werner, Thomas, et al. “Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones.” <i>Synthesis</i>, vol. 53, no. 19, Georg Thieme Verlag KG, 2021, pp. 3545–54, doi:<a href=\"https://doi.org/10.1055/a-1509-6078\">10.1055/a-1509-6078</a>.","ama":"Werner T, Grandane A, Pudnika L, Domraceva I, Zalubovskis R. Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones. <i>Synthesis</i>. 2021;53(19):3545-3554. doi:<a href=\"https://doi.org/10.1055/a-1509-6078\">10.1055/a-1509-6078</a>","bibtex":"@article{Werner_Grandane_Pudnika_Domraceva_Zalubovskis_2021, title={Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones}, volume={53}, DOI={<a href=\"https://doi.org/10.1055/a-1509-6078\">10.1055/a-1509-6078</a>}, number={19}, journal={Synthesis}, publisher={Georg Thieme Verlag KG}, author={Werner, Thomas and Grandane, Aiga and Pudnika, Linda and Domraceva, Ilona and Zalubovskis, Raivis}, year={2021}, pages={3545–3554} }","apa":"Werner, T., Grandane, A., Pudnika, L., Domraceva, I., &#38; Zalubovskis, R. (2021). Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones. <i>Synthesis</i>, <i>53</i>(19), 3545–3554. <a href=\"https://doi.org/10.1055/a-1509-6078\">https://doi.org/10.1055/a-1509-6078</a>","ieee":"T. Werner, A. Grandane, L. Pudnika, I. Domraceva, and R. Zalubovskis, “Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones,” <i>Synthesis</i>, vol. 53, no. 19, pp. 3545–3554, 2021, doi: <a href=\"https://doi.org/10.1055/a-1509-6078\">10.1055/a-1509-6078</a>.","short":"T. Werner, A. Grandane, L. Pudnika, I. Domraceva, R. Zalubovskis, Synthesis 53 (2021) 3545–3554.","chicago":"Werner, Thomas, Aiga Grandane, Linda Pudnika, Ilona Domraceva, and Raivis Zalubovskis. “Base-Free Catalytic Wittig-/Cross-Coupling Reaction Sequence as Short Synthetic Strategy for the Preparation of Highly Functionalized Arylbenzoxepinones.” <i>Synthesis</i> 53, no. 19 (2021): 3545–54. <a href=\"https://doi.org/10.1055/a-1509-6078\">https://doi.org/10.1055/a-1509-6078</a>."}},{"doi":"10.1039/d1sc02663a","language":[{"iso":"eng"}],"date_updated":"2025-11-10T08:49:01Z","publication_status":"published","intvolume":"        12","title":"Indirect reduction of CO<sub>2</sub> and recycling of polymers by manganese-catalyzed transfer hydrogenation of amides, carbamates, urea derivatives, and polyurethanes","year":"2021","publication_identifier":{"issn":["2041-6520","2041-6539"]},"author":[{"last_name":"Liu","first_name":"Xin","full_name":"Liu, Xin"},{"id":"89271","first_name":"Thomas","orcid":"https://orcid.org/0000-0001-9025-3244","last_name":"Werner","full_name":"Werner, Thomas"}],"keyword":["T1","T3","CSSD"],"type":"journal_article","department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"date_created":"2023-01-22T20:24:03Z","abstract":[{"text":"<p>A Mn–PNP complex proved to be a suitable catalyst for the transfer hydrogenation of amides, carbamates, urea derivatives and even polyurethanes.</p>","lang":"eng"}],"issue":"31","publication":"Chemical Science","user_id":"89271","volume":12,"page":"10590-10597","_id":"37944","publisher":"Royal Society of Chemistry (RSC)","status":"public","citation":{"apa":"Liu, X., &#38; Werner, T. (2021). Indirect reduction of CO<sub>2</sub> and recycling of polymers by manganese-catalyzed transfer hydrogenation of amides, carbamates, urea derivatives, and polyurethanes. <i>Chemical Science</i>, <i>12</i>(31), 10590–10597. <a href=\"https://doi.org/10.1039/d1sc02663a\">https://doi.org/10.1039/d1sc02663a</a>","ieee":"X. Liu and T. Werner, “Indirect reduction of CO<sub>2</sub> and recycling of polymers by manganese-catalyzed transfer hydrogenation of amides, carbamates, urea derivatives, and polyurethanes,” <i>Chemical Science</i>, vol. 12, no. 31, pp. 10590–10597, 2021, doi: <a href=\"https://doi.org/10.1039/d1sc02663a\">10.1039/d1sc02663a</a>.","short":"X. Liu, T. Werner, Chemical Science 12 (2021) 10590–10597.","chicago":"Liu, Xin, and Thomas Werner. “Indirect Reduction of CO<sub>2</sub> and Recycling of Polymers by Manganese-Catalyzed Transfer Hydrogenation of Amides, Carbamates, Urea Derivatives, and Polyurethanes.” <i>Chemical Science</i> 12, no. 31 (2021): 10590–97. <a href=\"https://doi.org/10.1039/d1sc02663a\">https://doi.org/10.1039/d1sc02663a</a>.","mla":"Liu, Xin, and Thomas Werner. “Indirect Reduction of CO<sub>2</sub> and Recycling of Polymers by Manganese-Catalyzed Transfer Hydrogenation of Amides, Carbamates, Urea Derivatives, and Polyurethanes.” <i>Chemical Science</i>, vol. 12, no. 31, Royal Society of Chemistry (RSC), 2021, pp. 10590–97, doi:<a href=\"https://doi.org/10.1039/d1sc02663a\">10.1039/d1sc02663a</a>.","ama":"Liu X, Werner T. Indirect reduction of CO<sub>2</sub> and recycling of polymers by manganese-catalyzed transfer hydrogenation of amides, carbamates, urea derivatives, and polyurethanes. <i>Chemical Science</i>. 2021;12(31):10590-10597. doi:<a href=\"https://doi.org/10.1039/d1sc02663a\">10.1039/d1sc02663a</a>","bibtex":"@article{Liu_Werner_2021, title={Indirect reduction of CO<sub>2</sub> and recycling of polymers by manganese-catalyzed transfer hydrogenation of amides, carbamates, urea derivatives, and polyurethanes}, volume={12}, DOI={<a href=\"https://doi.org/10.1039/d1sc02663a\">10.1039/d1sc02663a</a>}, number={31}, journal={Chemical Science}, publisher={Royal Society of Chemistry (RSC)}, author={Liu, Xin and Werner, Thomas}, year={2021}, pages={10590–10597} }"}},{"citation":{"bibtex":"@article{Tönjes_Longwitz_Werner_2021, title={Poly(methylhydrosiloxane) as a reductant in the catalytic base-free Wittig reaction}, volume={23}, DOI={<a href=\"https://doi.org/10.1039/d1gc00953b\">10.1039/d1gc00953b</a>}, number={13}, journal={Green Chemistry}, publisher={Royal Society of Chemistry (RSC)}, author={Tönjes, Jan and Longwitz, Lars and Werner, Thomas}, year={2021}, pages={4852–4857} }","chicago":"Tönjes, Jan, Lars Longwitz, and Thomas Werner. “Poly(Methylhydrosiloxane) as a Reductant in the Catalytic Base-Free Wittig Reaction.” <i>Green Chemistry</i> 23, no. 13 (2021): 4852–57. <a href=\"https://doi.org/10.1039/d1gc00953b\">https://doi.org/10.1039/d1gc00953b</a>.","short":"J. Tönjes, L. Longwitz, T. Werner, Green Chemistry 23 (2021) 4852–4857.","ama":"Tönjes J, Longwitz L, Werner T. Poly(methylhydrosiloxane) as a reductant in the catalytic base-free Wittig reaction. <i>Green Chemistry</i>. 2021;23(13):4852-4857. doi:<a href=\"https://doi.org/10.1039/d1gc00953b\">10.1039/d1gc00953b</a>","ieee":"J. Tönjes, L. Longwitz, and T. Werner, “Poly(methylhydrosiloxane) as a reductant in the catalytic base-free Wittig reaction,” <i>Green Chemistry</i>, vol. 23, no. 13, pp. 4852–4857, 2021, doi: <a href=\"https://doi.org/10.1039/d1gc00953b\">10.1039/d1gc00953b</a>.","mla":"Tönjes, Jan, et al. “Poly(Methylhydrosiloxane) as a Reductant in the Catalytic Base-Free Wittig Reaction.” <i>Green Chemistry</i>, vol. 23, no. 13, Royal Society of Chemistry (RSC), 2021, pp. 4852–57, doi:<a href=\"https://doi.org/10.1039/d1gc00953b\">10.1039/d1gc00953b</a>.","apa":"Tönjes, J., Longwitz, L., &#38; Werner, T. (2021). Poly(methylhydrosiloxane) as a reductant in the catalytic base-free Wittig reaction. <i>Green Chemistry</i>, <i>23</i>(13), 4852–4857. <a href=\"https://doi.org/10.1039/d1gc00953b\">https://doi.org/10.1039/d1gc00953b</a>"},"volume":23,"user_id":"89271","_id":"37945","publisher":"Royal Society of Chemistry (RSC)","page":"4852-4857","status":"public","department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"type":"journal_article","keyword":["T2","CSSD"],"date_created":"2023-01-22T20:25:13Z","abstract":[{"lang":"eng","text":"<p>PMHS proved to be a suitable terminal reductant for P(<sc>iii</sc>)/P(<sc>v</sc>) redox cycling with a methyl-substituted phosphetane as catalyst and BuOAc as solvent. The formation of water by silanol condensation was identified as main pathway of siloxane formation.</p>"}],"issue":"13","publication":"Green Chemistry","doi":"10.1039/d1gc00953b","language":[{"iso":"eng"}],"intvolume":"        23","date_updated":"2025-11-10T08:48:01Z","publication_status":"published","author":[{"full_name":"Tönjes, Jan","first_name":"Jan","last_name":"Tönjes"},{"full_name":"Longwitz, Lars","first_name":"Lars","last_name":"Longwitz"},{"id":"89271","full_name":"Werner, Thomas","first_name":"Thomas","orcid":"0000-0001-9025-3244","last_name":"Werner"}],"publication_identifier":{"issn":["1463-9262","1463-9270"]},"year":"2021","title":"Poly(methylhydrosiloxane) as a reductant in the catalytic base-free Wittig reaction"},{"status":"public","volume":25,"user_id":"89271","publisher":"American Chemical Society (ACS)","_id":"62098","page":"89-97","citation":{"ama":"Stefanow V, Grandane A, Eh M, Panten J, Spannenberg A, Werner T. Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant. <i>Organic Process Research &#38;amp; Development</i>. 2021;25(1):89-97. doi:<a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>","bibtex":"@article{Stefanow_Grandane_Eh_Panten_Spannenberg_Werner_2021, title={Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant}, volume={25}, DOI={<a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>}, number={1}, journal={Organic Process Research &#38;amp; Development}, publisher={American Chemical Society (ACS)}, author={Stefanow, Vivian and Grandane, Aiga and Eh, Marcus and Panten, Johannes and Spannenberg, Anke and Werner, Thomas}, year={2021}, pages={89–97} }","mla":"Stefanow, Vivian, et al. “Stereoselective Synthesis of a<i>Cis</i>-Cedrane-8,9-Diol as a Key Intermediate for an Amber Odorant.” <i>Organic Process Research &#38;amp; Development</i>, vol. 25, no. 1, American Chemical Society (ACS), 2021, pp. 89–97, doi:<a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>.","short":"V. Stefanow, A. Grandane, M. Eh, J. Panten, A. Spannenberg, T. Werner, Organic Process Research &#38;amp; Development 25 (2021) 89–97.","chicago":"Stefanow, Vivian, Aiga Grandane, Marcus Eh, Johannes Panten, Anke Spannenberg, and Thomas Werner. “Stereoselective Synthesis of a<i>Cis</i>-Cedrane-8,9-Diol as a Key Intermediate for an Amber Odorant.” <i>Organic Process Research &#38;amp; Development</i> 25, no. 1 (2021): 89–97. <a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">https://doi.org/10.1021/acs.oprd.0c00423</a>.","apa":"Stefanow, V., Grandane, A., Eh, M., Panten, J., Spannenberg, A., &#38; Werner, T. (2021). Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant. <i>Organic Process Research &#38;amp; Development</i>, <i>25</i>(1), 89–97. <a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">https://doi.org/10.1021/acs.oprd.0c00423</a>","ieee":"V. Stefanow, A. Grandane, M. Eh, J. Panten, A. Spannenberg, and T. Werner, “Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant,” <i>Organic Process Research &#38;amp; Development</i>, vol. 25, no. 1, pp. 89–97, 2021, doi: <a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>."},"intvolume":"        25","date_updated":"2025-11-10T08:48:33Z","publication_status":"published","author":[{"last_name":"Stefanow","first_name":"Vivian","full_name":"Stefanow, Vivian"},{"first_name":"Aiga","last_name":"Grandane","full_name":"Grandane, Aiga"},{"last_name":"Eh","first_name":"Marcus","full_name":"Eh, Marcus"},{"last_name":"Panten","first_name":"Johannes","full_name":"Panten, Johannes"},{"first_name":"Anke","last_name":"Spannenberg","full_name":"Spannenberg, Anke"},{"first_name":"Thomas","orcid":"0000-0001-9025-3244","last_name":"Werner","full_name":"Werner, Thomas","id":"89271"}],"publication_identifier":{"issn":["1083-6160","1520-586X"]},"title":"Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant","year":"2021","doi":"10.1021/acs.oprd.0c00423","language":[{"iso":"eng"}],"publication":"Organic Process Research &amp; Development","issue":"1","department":[{"_id":"35"},{"_id":"2"}],"type":"journal_article","keyword":["T4","CSSD"],"date_created":"2025-11-05T15:26:05Z"},{"status":"public","page":"89-97","_id":"62099","publisher":"American Chemical Society (ACS)","user_id":"89271","volume":25,"citation":{"chicago":"Stefanow, Vivian, Aiga Grandane, Marcus Eh, Johannes Panten, Anke Spannenberg, and Thomas Werner. “Stereoselective Synthesis of a<i>Cis</i>-Cedrane-8,9-Diol as a Key Intermediate for an Amber Odorant.” <i>Organic Process Research &#38;amp; Development</i> 25, no. 1 (2021): 89–97. <a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">https://doi.org/10.1021/acs.oprd.0c00423</a>.","short":"V. Stefanow, A. Grandane, M. Eh, J. Panten, A. Spannenberg, T. Werner, Organic Process Research &#38;amp; Development 25 (2021) 89–97.","apa":"Stefanow, V., Grandane, A., Eh, M., Panten, J., Spannenberg, A., &#38; Werner, T. (2021). Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant. <i>Organic Process Research &#38;amp; Development</i>, <i>25</i>(1), 89–97. <a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">https://doi.org/10.1021/acs.oprd.0c00423</a>","ieee":"V. Stefanow, A. Grandane, M. Eh, J. Panten, A. Spannenberg, and T. Werner, “Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant,” <i>Organic Process Research &#38;amp; Development</i>, vol. 25, no. 1, pp. 89–97, 2021, doi: <a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>.","ama":"Stefanow V, Grandane A, Eh M, Panten J, Spannenberg A, Werner T. Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant. <i>Organic Process Research &#38;amp; Development</i>. 2021;25(1):89-97. doi:<a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>","bibtex":"@article{Stefanow_Grandane_Eh_Panten_Spannenberg_Werner_2021, title={Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant}, volume={25}, DOI={<a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>}, number={1}, journal={Organic Process Research &#38;amp; Development}, publisher={American Chemical Society (ACS)}, author={Stefanow, Vivian and Grandane, Aiga and Eh, Marcus and Panten, Johannes and Spannenberg, Anke and Werner, Thomas}, year={2021}, pages={89–97} }","mla":"Stefanow, Vivian, et al. “Stereoselective Synthesis of a<i>Cis</i>-Cedrane-8,9-Diol as a Key Intermediate for an Amber Odorant.” <i>Organic Process Research &#38;amp; Development</i>, vol. 25, no. 1, American Chemical Society (ACS), 2021, pp. 89–97, doi:<a href=\"https://doi.org/10.1021/acs.oprd.0c00423\">10.1021/acs.oprd.0c00423</a>."},"year":"2021","title":"Stereoselective Synthesis of a<i>cis</i>-Cedrane-8,9-diol as a Key Intermediate for an Amber Odorant","author":[{"full_name":"Stefanow, Vivian","first_name":"Vivian","last_name":"Stefanow"},{"first_name":"Aiga","last_name":"Grandane","full_name":"Grandane, Aiga"},{"full_name":"Eh, Marcus","first_name":"Marcus","last_name":"Eh"},{"full_name":"Panten, Johannes","last_name":"Panten","first_name":"Johannes"},{"full_name":"Spannenberg, Anke","first_name":"Anke","last_name":"Spannenberg"},{"id":"89271","full_name":"Werner, Thomas","orcid":"0000-0001-9025-3244","last_name":"Werner","first_name":"Thomas"}],"publication_identifier":{"issn":["1083-6160","1520-586X"]},"date_updated":"2025-11-10T08:49:27Z","publication_status":"published","intvolume":"        25","language":[{"iso":"eng"}],"doi":"10.1021/acs.oprd.0c00423","issue":"1","publication":"Organic Process Research &amp; Development","date_created":"2025-11-05T15:28:23Z","keyword":["T4","CSSD"],"type":"journal_article","department":[{"_id":"35"},{"_id":"2"}]},{"year":"2021","title":"AMPA-15N – Synthesis and application as standard compound in traceable degradation studies of glyphosate","author":[{"first_name":"Marisa A.","last_name":"Wirth","full_name":"Wirth, Marisa A."},{"first_name":"Lars","last_name":"Longwitz","full_name":"Longwitz, Lars"},{"first_name":"Marion","last_name":"Kanwischer","full_name":"Kanwischer, Marion"},{"full_name":"Gros, Peter","last_name":"Gros","first_name":"Peter"},{"last_name":"Leinweber","first_name":"Peter","full_name":"Leinweber, Peter"},{"id":"89271","full_name":"Werner, Thomas","first_name":"Thomas","last_name":"Werner","orcid":"https://orcid.org/0000-0001-9025-3244"}],"publication_identifier":{"issn":["0147-6513"]},"publication_status":"published","date_updated":"2025-11-10T08:48:20Z","intvolume":"       225","article_number":"112768","language":[{"iso":"eng"}],"doi":"10.1016/j.ecoenv.2021.112768","publication":"Ecotoxicology and Environmental Safety","date_created":"2023-01-22T20:23:06Z","type":"journal_article","keyword":["T4","CSSD"],"department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"status":"public","_id":"37943","publisher":"Elsevier BV","user_id":"89271","volume":225,"citation":{"mla":"Wirth, Marisa A., et al. “AMPA-15N – Synthesis and Application as Standard Compound in Traceable Degradation Studies of Glyphosate.” <i>Ecotoxicology and Environmental Safety</i>, vol. 225, 112768, Elsevier BV, 2021, doi:<a href=\"https://doi.org/10.1016/j.ecoenv.2021.112768\">10.1016/j.ecoenv.2021.112768</a>.","bibtex":"@article{Wirth_Longwitz_Kanwischer_Gros_Leinweber_Werner_2021, title={AMPA-15N – Synthesis and application as standard compound in traceable degradation studies of glyphosate}, volume={225}, DOI={<a href=\"https://doi.org/10.1016/j.ecoenv.2021.112768\">10.1016/j.ecoenv.2021.112768</a>}, number={112768}, journal={Ecotoxicology and Environmental Safety}, publisher={Elsevier BV}, author={Wirth, Marisa A. and Longwitz, Lars and Kanwischer, Marion and Gros, Peter and Leinweber, Peter and Werner, Thomas}, year={2021} }","ama":"Wirth MA, Longwitz L, Kanwischer M, Gros P, Leinweber P, Werner T. AMPA-15N – Synthesis and application as standard compound in traceable degradation studies of glyphosate. <i>Ecotoxicology and Environmental Safety</i>. 2021;225. doi:<a href=\"https://doi.org/10.1016/j.ecoenv.2021.112768\">10.1016/j.ecoenv.2021.112768</a>","ieee":"M. A. Wirth, L. Longwitz, M. Kanwischer, P. Gros, P. Leinweber, and T. Werner, “AMPA-15N – Synthesis and application as standard compound in traceable degradation studies of glyphosate,” <i>Ecotoxicology and Environmental Safety</i>, vol. 225, Art. no. 112768, 2021, doi: <a href=\"https://doi.org/10.1016/j.ecoenv.2021.112768\">10.1016/j.ecoenv.2021.112768</a>.","apa":"Wirth, M. A., Longwitz, L., Kanwischer, M., Gros, P., Leinweber, P., &#38; Werner, T. (2021). 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Werner, Advanced Synthesis and Catalysis 363 (2021) 1096–1104.","chicago":"Liu, Xin, and Thomas Werner. “Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides.” <i>Advanced Synthesis and Catalysis</i> 363, no. 4 (2021): 1096–1104. <a href=\"https://doi.org/10.1002/adsc.202001209\">https://doi.org/10.1002/adsc.202001209</a>.","apa":"Liu, X., &#38; Werner, T. (2021). Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides. <i>Advanced Synthesis and Catalysis</i>, <i>363</i>(4), 1096–1104. <a href=\"https://doi.org/10.1002/adsc.202001209\">https://doi.org/10.1002/adsc.202001209</a>","ieee":"X. Liu and T. Werner, “Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides,” <i>Advanced Synthesis and Catalysis</i>, vol. 363, no. 4, pp. 1096–1104, 2021, doi: <a href=\"https://doi.org/10.1002/adsc.202001209\">10.1002/adsc.202001209</a>.","ama":"Liu X, Werner T. Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides. <i>Advanced Synthesis and Catalysis</i>. 2021;363(4):1096-1104. doi:<a href=\"https://doi.org/10.1002/adsc.202001209\">10.1002/adsc.202001209</a>","bibtex":"@article{Liu_Werner_2021, title={Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides}, volume={363}, DOI={<a href=\"https://doi.org/10.1002/adsc.202001209\">10.1002/adsc.202001209</a>}, number={4}, journal={Advanced Synthesis and Catalysis}, publisher={Wiley}, author={Liu, Xin and Werner, Thomas}, year={2021}, pages={1096–1104} }","mla":"Liu, Xin, and Thomas Werner. “Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides.” <i>Advanced Synthesis and Catalysis</i>, vol. 363, no. 4, Wiley, 2021, pp. 1096–104, doi:<a href=\"https://doi.org/10.1002/adsc.202001209\">10.1002/adsc.202001209</a>."},"volume":363,"user_id":"89271","_id":"37948","publisher":"Wiley","page":"1096-1104","status":"public","department":[{"_id":"35"},{"_id":"2"},{"_id":"657"}],"keyword":["T1","T3","CSSD"],"type":"journal_article","date_created":"2023-01-22T20:30:29Z","extern":"1","issue":"4","publication":"Advanced Synthesis and Catalysis","doi":"10.1002/adsc.202001209","language":[{"iso":"eng"}],"intvolume":"       363","date_updated":"2025-11-10T08:48:47Z","publication_status":"published","author":[{"first_name":"Xin","last_name":"Liu","full_name":"Liu, Xin"},{"last_name":"Werner","orcid":"https://orcid.org/0000-0001-9025-3244","first_name":"Thomas","full_name":"Werner, Thomas","id":"89271"}],"publication_identifier":{"issn":["1615-4150","1615-4169"]},"title":"Selective Construction of C−C and C=C Bonds by Manganese Catalyzed Coupling of Alcohols with Phosphorus Ylides","year":"2021"},{"author":[{"id":"26886","last_name":"Dann","first_name":"Andreas Peter","full_name":"Dann, Andreas Peter"},{"full_name":"Plate, Henrik","last_name":"Plate","first_name":"Henrik"},{"id":"66173","first_name":"Ben","last_name":"Hermann","orcid":"0000-0001-9848-2017","full_name":"Hermann, Ben"},{"full_name":"Ponta, Serena Elisa","first_name":"Serena Elisa","last_name":"Ponta"},{"id":"59256","first_name":"Eric","orcid":"0000-0003-3470-3647","last_name":"Bodden","full_name":"Bodden, Eric"}],"publication_identifier":{"issn":["0098-5589","1939-3520","2326-3881"]},"title":"Identifying Challenges for OSS Vulnerability Scanners - A Study &amp; Test Suite","status":"public","year":"2021","publication_status":"published","date_updated":"2025-11-11T14:28:46Z","_id":"31132","publisher":"Institute of Electrical and Electronics Engineers (IEEE)","language":[{"iso":"eng"}],"page":"1-1","user_id":"477","doi":"10.1109/tse.2021.3101739","citation":{"mla":"Dann, Andreas Peter, et al. “Identifying Challenges for OSS Vulnerability Scanners - A Study &#38;amp; Test Suite.” <i>IEEE Transactions on Software Engineering</i>, Institute of Electrical and Electronics Engineers (IEEE), 2021, pp. 1–1, doi:<a href=\"https://doi.org/10.1109/tse.2021.3101739\">10.1109/tse.2021.3101739</a>.","ama":"Dann AP, Plate H, Hermann B, Ponta SE, Bodden E. 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