分子开关
荧光
发光
光化学
光异构化
分子
材料科学
液晶
氢键
光开关
辐照
光电子学
化学
光学
异构化
有机化学
生物化学
物理
催化作用
核物理学
作者
Yan-Rong He,Shu Zhang,Hari Krishna Bisoyi,Jinghui Qiao,Hong Chen,Jingjing Gao,Jinbao Guo,Quan Li
标识
DOI:10.1002/anie.202111344
摘要
Two light-driven chiral fluorescent molecular switches, (R,S,R)-switch 1 and (R,S,R)-switch 2, are prepared by means of hydrogen-bonded (H-bonded) assembly of a photoresponsive (S) chiral fluorescent molecule, respectively with a cyano substitution at different positions as an H-bond acceptor and an opposite (R) chiral molecule as an H-bond donor. The resulting two switches exhibit tunable and reversible Z/E photoisomerization irradiated with 450 nm blue and 365 nm UV light. When doped into an achiral liquid crystal, both switches are found to be able to form a CPL tunable luminescent helical superstructure. In contrast to the tunable CPL characteristics of the system incorporating switch 2, exposure of the system incorporating switch 1 to 365 nm and 450 nm radiation can lead to controllable different photostationary CPL behavior, including switching-off and polarization inversion. In addition, optical information coding is demonstrated using the system containing switch 1.
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