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Photoisomerization of dicyanorhodanine-functionalized thiophenes

π-Conjugated oligomers functionalized with the popular dicyanorhodanine (RCN) electron acceptor are shown to be susceptible to photo-induced Z/E isomerization. The stereochemistry of two model RCN-functionalized thiophenes is confirmed by single crystal X-ray analysis and 2D NMR, and shown to be the...

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Autores principales: Kornman, Cory T., Li, Lei, Weldeab, Asmerom O., Ghiviriga, Ion, Abboud, Khalil A., Castellano, Ronald K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162279/
https://www.ncbi.nlm.nih.gov/pubmed/34094283
http://dx.doi.org/10.1039/d0sc04409a
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author Kornman, Cory T.
Li, Lei
Weldeab, Asmerom O.
Ghiviriga, Ion
Abboud, Khalil A.
Castellano, Ronald K.
author_facet Kornman, Cory T.
Li, Lei
Weldeab, Asmerom O.
Ghiviriga, Ion
Abboud, Khalil A.
Castellano, Ronald K.
author_sort Kornman, Cory T.
collection PubMed
description π-Conjugated oligomers functionalized with the popular dicyanorhodanine (RCN) electron acceptor are shown to be susceptible to photo-induced Z/E isomerization. The stereochemistry of two model RCN-functionalized thiophenes is confirmed by single crystal X-ray analysis and 2D NMR, and shown to be the thermodynamically stable Z form. Relative energies, Z/E configurations, and conformational preferences are modelled using density functional theory (DFT). The photophysical properties of the model compounds are explored experimentally and computationally; the Z and E isomers display similar absorption profiles with significant spectral overlap and are inseparable upon irradiation to a photostationary state. The well-behaved photoisomerization process is routinely observable by thin-layer chromatography, UV-vis, and NMR, and the photochemical behavior of the two RCN-functionalized thiophenes is characterized under varying wavelengths of irradiation. Ultraviolet (254 nm) irradiation results in photostationary state compositions of 56/44 and 69/31 Z-isomer/E-isomer for substrates functionalized with one thiophene and two thiophenes, respectively. Ambient laboratory lighting results in excess of 10 percent E-isomer for each species in solution, an important consideration for processing such materials, particularly for organic photovoltaic applications. In addition, a photoswitching experiment is conducted to demonstrate the reversible nature of the photoreaction, where little evidence of fatigue is observed over numerous switching cycles. Overall, this work showcases an approach to characterize the stereochemistry and photochemical behavior of dicyanorhodanine-functionalized thiophenes, widely used components of functional molecules and materials.
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spelling pubmed-81622792021-06-04 Photoisomerization of dicyanorhodanine-functionalized thiophenes Kornman, Cory T. Li, Lei Weldeab, Asmerom O. Ghiviriga, Ion Abboud, Khalil A. Castellano, Ronald K. Chem Sci Chemistry π-Conjugated oligomers functionalized with the popular dicyanorhodanine (RCN) electron acceptor are shown to be susceptible to photo-induced Z/E isomerization. The stereochemistry of two model RCN-functionalized thiophenes is confirmed by single crystal X-ray analysis and 2D NMR, and shown to be the thermodynamically stable Z form. Relative energies, Z/E configurations, and conformational preferences are modelled using density functional theory (DFT). The photophysical properties of the model compounds are explored experimentally and computationally; the Z and E isomers display similar absorption profiles with significant spectral overlap and are inseparable upon irradiation to a photostationary state. The well-behaved photoisomerization process is routinely observable by thin-layer chromatography, UV-vis, and NMR, and the photochemical behavior of the two RCN-functionalized thiophenes is characterized under varying wavelengths of irradiation. Ultraviolet (254 nm) irradiation results in photostationary state compositions of 56/44 and 69/31 Z-isomer/E-isomer for substrates functionalized with one thiophene and two thiophenes, respectively. Ambient laboratory lighting results in excess of 10 percent E-isomer for each species in solution, an important consideration for processing such materials, particularly for organic photovoltaic applications. In addition, a photoswitching experiment is conducted to demonstrate the reversible nature of the photoreaction, where little evidence of fatigue is observed over numerous switching cycles. Overall, this work showcases an approach to characterize the stereochemistry and photochemical behavior of dicyanorhodanine-functionalized thiophenes, widely used components of functional molecules and materials. The Royal Society of Chemistry 2020-09-09 /pmc/articles/PMC8162279/ /pubmed/34094283 http://dx.doi.org/10.1039/d0sc04409a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kornman, Cory T.
Li, Lei
Weldeab, Asmerom O.
Ghiviriga, Ion
Abboud, Khalil A.
Castellano, Ronald K.
Photoisomerization of dicyanorhodanine-functionalized thiophenes
title Photoisomerization of dicyanorhodanine-functionalized thiophenes
title_full Photoisomerization of dicyanorhodanine-functionalized thiophenes
title_fullStr Photoisomerization of dicyanorhodanine-functionalized thiophenes
title_full_unstemmed Photoisomerization of dicyanorhodanine-functionalized thiophenes
title_short Photoisomerization of dicyanorhodanine-functionalized thiophenes
title_sort photoisomerization of dicyanorhodanine-functionalized thiophenes
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8162279/
https://www.ncbi.nlm.nih.gov/pubmed/34094283
http://dx.doi.org/10.1039/d0sc04409a
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