光异构化
光激发
异构化
光化学
化学
光敏剂
光稳态
亚稳态
敏化
超分子化学
分子
紫外线
激发
有机化学
物理
免疫学
催化作用
生物
量子力学
作者
Julius Gemen,Jonathan R. Church,Tero‐Petri Ruoko,Nikita A. Durandin,Michał J. Białek,Maren Weißenfels,Moran Feller,Miri Kazes,Magdalena Odaybat,Veniamin A. Borin,Rishir Kalepu,Yael Diskin−Posner,Dan Oron,Matthew J. Fuchter,Arri Priimägi,Igor Schapiro,Rafał Klajn
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-09-21
卷期号:381 (6664): 1357-1363
被引量:56
标识
DOI:10.1126/science.adh9059
摘要
Photoisomerization of azobenzenes from their stable E isomer to the metastable Z state is the basis of numerous applications of these molecules. However, this reaction typically requires ultraviolet light, which limits applicability. In this study, we introduce disequilibration by sensitization under confinement (DESC), a supramolecular approach to induce the E-to-Z isomerization by using light of a desired color, including red. DESC relies on a combination of a macrocyclic host and a photosensitizer, which act together to selectively bind and sensitize E-azobenzenes for isomerization. The Z isomer lacks strong affinity for and is expelled from the host, which can then convert additional E-azobenzenes to the Z state. In this way, the host-photosensitizer complex converts photon energy into chemical energy in the form of out-of-equilibrium photostationary states, including ones that cannot be accessed through direct photoexcitation.
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