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Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery

Stilbene derivatives have long been known to undergo “acid-catalyzed” Z → E isomerization, where a strong mineral acid at high concentration is practically necessary. Such severe reaction conditions often cause undesired by-reactions and limit their potential application. Herein, we present a trace...

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Autores principales: Hao, Taotao, Yang, Yongsheng, Liang, Wenting, Fan, Chunying, Wang, Xin, Wu, Wanhua, Chen, Xiaochuan, Fu, Haiyan, Chen, Hua, Yang, Cheng
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/PMC8179340/
https://www.ncbi.nlm.nih.gov/pubmed/34164029
http://dx.doi.org/10.1039/d0sc05213b
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author Hao, Taotao
Yang, Yongsheng
Liang, Wenting
Fan, Chunying
Wang, Xin
Wu, Wanhua
Chen, Xiaochuan
Fu, Haiyan
Chen, Hua
Yang, Cheng
author_facet Hao, Taotao
Yang, Yongsheng
Liang, Wenting
Fan, Chunying
Wang, Xin
Wu, Wanhua
Chen, Xiaochuan
Fu, Haiyan
Chen, Hua
Yang, Cheng
author_sort Hao, Taotao
collection PubMed
description Stilbene derivatives have long been known to undergo “acid-catalyzed” Z → E isomerization, where a strong mineral acid at high concentration is practically necessary. Such severe reaction conditions often cause undesired by-reactions and limit their potential application. Herein, we present a trace mild acid-catalyzed Z → E isomerization found with stilbene derivatives fused with a norbornene moiety. By-reactions, such as the migration of the C[double bond, length as m-dash]C double bond and electrophilic addition reactions, were completely inhibited because of the ring strain caused by the fused norbornene component. Direct photolysis of the E isomers at selected wavelengths led to the E → Z photoisomerization of these stilbene derivatives and thus constituted a unique class of molecular switches orthogonally controllable by light and acid. The catalytic amount of acid could be readily removed, and the Z → E isomerization could be controlled by turning on/off the irradiation of a photoacid, which allowed repeated isomerization in a non-invasive manner. Moreover, the Z isomer produced by photoisomerization could spontaneously self-recover to the E isomer in the presence of a catalytic amount of acid. The kinetics of Z → E isomerization were adjustable by manipulating catalytic factors and, therefore, unprecedented molecular photoswitches with adjustable self-recovery were realized.
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spelling pubmed-81793402021-06-22 Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery Hao, Taotao Yang, Yongsheng Liang, Wenting Fan, Chunying Wang, Xin Wu, Wanhua Chen, Xiaochuan Fu, Haiyan Chen, Hua Yang, Cheng Chem Sci Chemistry Stilbene derivatives have long been known to undergo “acid-catalyzed” Z → E isomerization, where a strong mineral acid at high concentration is practically necessary. Such severe reaction conditions often cause undesired by-reactions and limit their potential application. Herein, we present a trace mild acid-catalyzed Z → E isomerization found with stilbene derivatives fused with a norbornene moiety. By-reactions, such as the migration of the C[double bond, length as m-dash]C double bond and electrophilic addition reactions, were completely inhibited because of the ring strain caused by the fused norbornene component. Direct photolysis of the E isomers at selected wavelengths led to the E → Z photoisomerization of these stilbene derivatives and thus constituted a unique class of molecular switches orthogonally controllable by light and acid. The catalytic amount of acid could be readily removed, and the Z → E isomerization could be controlled by turning on/off the irradiation of a photoacid, which allowed repeated isomerization in a non-invasive manner. Moreover, the Z isomer produced by photoisomerization could spontaneously self-recover to the E isomer in the presence of a catalytic amount of acid. The kinetics of Z → E isomerization were adjustable by manipulating catalytic factors and, therefore, unprecedented molecular photoswitches with adjustable self-recovery were realized. The Royal Society of Chemistry 2020-12-28 /pmc/articles/PMC8179340/ /pubmed/34164029 http://dx.doi.org/10.1039/d0sc05213b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hao, Taotao
Yang, Yongsheng
Liang, Wenting
Fan, Chunying
Wang, Xin
Wu, Wanhua
Chen, Xiaochuan
Fu, Haiyan
Chen, Hua
Yang, Cheng
Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
title Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
title_full Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
title_fullStr Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
title_full_unstemmed Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
title_short Trace mild acid-catalysed Z → E isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
title_sort trace mild acid-catalysed z → e isomerization of norbornene-fused stilbene derivatives: intelligent chiral molecular photoswitches with controllable self-recovery
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179340/
https://www.ncbi.nlm.nih.gov/pubmed/34164029
http://dx.doi.org/10.1039/d0sc05213b
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