Fei Liang, Yu Weidong, Wu Zonghuai, Yin Yunjie, Moth-Poulsen Kasper, Wang Chaoxia
School of Textile Science and Engineering, Jiangnan University, 1800 Lihu Road, 214122, Wuxi, China.
Department of Chemistry and Chemical Engineering, Chalmers University of Technology, Gothenburg, 41296, Sweden.
Angew Chem Int Ed Engl. 2022 Nov 2;61(44):e202212483. doi: 10.1002/anie.202212483. Epub 2022 Oct 5.
Leuco dye-based thermochromic materials offer enormous potential for visible molecular logic due to the appealing reversible color-changing effect. The stable color state is uncontrollable as it depends only on the spontaneous protonation of the leuco dye and color developer. There is still a challenge to propose an effective approach to control bistable color function at required temperature. A family of azobenzenes with various alkyl chains (AZO(n)) is designed for protonation competition with leuco dye. The hydrogen bond and Van der Waals forces are formed between color developer and AZO(n). The color developer can be locked to provide the proton for the leuco dye by Z-AZO(n), while it can be released upon Z-to-E photoisomerization. The locked state can be lasted for more than 16 hours. This optically controlled leuco dye-based system demonstrates a visible sequential logic operation with four-input signals, and provides a new type of protonation-based optical control.
基于无色染料的热致变色材料因其引人注目的可逆变色效应而在可见分子逻辑方面具有巨大潜力。稳定的颜色状态是不可控的,因为它仅取决于无色染料和显色剂的自发质子化。提出一种在所需温度下控制双稳态颜色功能的有效方法仍然是一个挑战。设计了一系列具有不同烷基链的偶氮苯(AZO(n))用于与无色染料进行质子化竞争。显色剂与AZO(n)之间形成氢键和范德华力。Z-AZO(n)可以锁定显色剂以向无色染料提供质子,而在Z到E光异构化时它可以被释放。锁定状态可以持续超过16小时。这种基于光学控制的无色染料系统展示了具有四输入信号的可见顺序逻辑操作,并提供了一种新型的基于质子化的光学控制。