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一种铜引发的可逆光致变色体系:结构与光致变色响应关系的研究及潜在应用

A Cu triggered reversible photochromic system: the structure photochromic response relationship study and potential applications.

作者信息

Wang Shuping, Wu Lumiao, Li He, Zhang Guoyan, Wei Xueqian, Zheng Jiyi, Jiang Long, Ju Ping, Qu Fengli, Zhang Ensheng

机构信息

College of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong 273165, People's Republic of China.

Instrumental Analysis & Research Center, Sun Yat-Sen University, Guangzhou 510275, People's Republic of China.

出版信息

R Soc Open Sci. 2023 Jun 7;10(6):230121. doi: 10.1098/rsos.230121. eCollection 2023 Jun.

Abstract

Fifteen rhodamine B hydrazide hydrazone (RhBHH) derivatives (compounds -) with various substituent groups at different position and their photochromic property triggered by Cu were studied to illustrate the structure photochromic response relationship (SPRR). Three of them (compounds -) with a -position hydroxyl group and two -position halogen substituents display Cu-triggered photochromic which is significantly different from the previous reports. It was found that halogen atoms, which were generally considered to have no remarkable regulation effect, exhibited great influences on the photochromic behaviour of RhBHH derivatives. Detail photochromic properties of the developed photochromic system were revealed by using compound as the model substrate, and only Cu displayed high selective trigger effect. Good reversible photochromic phenomenon was observed after stimulated with visible light irradiation and dark (or heat) bleaching consecutively. Furthermore, this photochromic system could be used in the preparation of photochromic glass, special security ink, molecular logic gate and two-dimensional code for security information storage.

摘要

研究了15种在不同位置带有各种取代基的罗丹明B酰肼腙(RhBHH)衍生物(化合物 - )及其由铜引发的光致变色性质,以阐明结构 - 光致变色响应关系(SPRR)。其中三种(化合物 - )在α-位带有羟基且在β-位带有两个卤素取代基,表现出铜引发的光致变色,这与先前的报道有显著差异。发现通常被认为没有显著调节作用的卤素原子对RhBHH衍生物的光致变色行为有很大影响。以化合物 作为模型底物揭示了所开发的光致变色体系的详细光致变色性质,并且只有铜表现出高选择性触发效应。在连续受到可见光照射和黑暗(或加热)漂白刺激后,观察到良好的可逆光致变色现象。此外,这种光致变色体系可用于制备光致变色玻璃、特殊安全油墨、分子逻辑门和用于安全信息存储的二维码。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81a0/10245203/dd43a858cdd8/rsos230121f14.jpg

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