Issue 48, 2022

Multi-state photochromism of bis-tetraarylethene luminogens modulated through oligosilane linkages

Abstract

Controllable photochromic molecules both in solutions and solid states (amorphous, films, and crystals) are valuable nascent optical materials. In this work, we report a facial route to design multi-state photochromic molecules by incorporating oligosilane chains into photoactive triphenylvinylthiophene (TPT) luminogens. The flexibility, bulkiness, and unique σ–π conjugation brought by silane chains enable different intramolecular interactions between two TPT units. A longer silicon chain bridge facilitates efficient electron delocalization and reduced structural constraint, thus resulting in reversible photochromism even in crystals with high-contrast color differences. This work provides a general method for developing novel multi-state photochromic materials for application in data encryption.

Graphical abstract: Multi-state photochromism of bis-tetraarylethene luminogens modulated through oligosilane linkages

Supplementary files

Article information

Article type
Paper
Submitted
28 Sep 2022
Accepted
24 Nov 2022
First published
24 Nov 2022

J. Mater. Chem. C, 2022,10, 18182-18188

Multi-state photochromism of bis-tetraarylethene luminogens modulated through oligosilane linkages

C. Zhou, Z. Zhou, F. Yu, W. Xie, W. Zhang, Q. Yang, X. Xu, L. Gai and H. Lu, J. Mater. Chem. C, 2022, 10, 18182 DOI: 10.1039/D2TC04095F

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