利乐
可见光谱
偶氮苯
材料科学
光化学
化学
光电子学
药物化学
有机化学
分子
作者
Lucien N. Lameijer,Šimon Budzák,Nadja A. Simeth,Mickel J. Hansen,Ben L. Feringa,Denis Jacquemin,Wiktor Szymański
标识
DOI:10.1002/anie.202008700
摘要
Molecular photoswitches enable reversible external control of biological systems, nanomachines, and smart materials. Their development is driven by the need for low energy (green-red-NIR) light switching, to allow non-invasive operation with deep tissue penetration. The lack of clear design principles for the adaptation and optimization of such systems limits further applications. Here we provide a design rulebook for tetra-ortho-chloroazobenzenes, an emerging class of visible-light-responsive photochromes, by elucidating the role that substituents play in defining their key characteristics: absorption spectra, band overlap, photoswitching efficiencies, and half-lives of the unstable cis isomers. This is achieved through joint photochemical and theoretical analyses of a representative library of molecules featuring substituents of varying electronic nature. A set of guidelines is presented that enables tuning of properties to the desired application through informed photochrome engineering.
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