Revisiting Peri‐Aryloxyquinones: From a Forgotten Photochromic System to a Promising Tool for Emerging Applications

Author:

Lvov Andrey G.12ORCID,Klimenko Lyubov S.3,Bykov Vasily N.12,Hecht Stefan45ORCID

Affiliation:

1. A. E. Favorsky Irkutsk Institute of Chemistry Siberian Branch of the Russian Academy of Sciences 1 Favorsky St. Irkutsk 664033 Russia

2. Irkutsk National Research Technical University 83 Lermontov St. Irkutsk 664074 Russia

3. Yugra State University 16 Chekhov St. Khanty-Mansiysk 628012 Russia

4. Department of Chemistry & Center for the Science of Materials Berlin Humboldt-Universität zu Berlin Brook-Taylor-Str. 2 12489 Berlin Germany

5. DWI–Leibniz Institute for Interactive Materials Forckenbeckstr. 50 52074 Aachen Germany

Abstract

AbstractEmerging applications of photochromic compounds demand new molecular designs that can be inspired by some long‐known yet currently forgotten classes of photoswitches. In the present review, we remind the community about Peri‐AryloxyQuinones (PAQs) and their unique photoswitching behavior originally discovered more than 50 years ago. At the heart of this phenomenon is the light‐induced migration of an aromatic moiety (arylotropy) in peri‐aryloxy‐substituted quinones resulting in ana‐quinones. PAQs feature absorbance of both isomers in the visible spectral region, photochromism in the amorphous and crystalline state, and thermal stability of the photogenerated ana‐isomer. Particularly noticeable is the high sensitivity of the ana‐isomer towards nucleophiles in solution. In addition to the mechanism of molecular photochromism and the underlaying structure‐switch relationships, we analyze potential applications and prospects of aryloxyquinones in optically switchable materials and devices. Due to their ability to efficiently photoswitch in the solid state, PAQs are indeed attractive candidates for such materials and devices, including electronics (optically controllable circuits, switches, transistors, memories, and displays), porous crystalline materials, crystalline actuators, photoactivated sensors, and many more. This review is intended to serve as a guide for researchers who wish to use photoswitchable PAQs in the development of new photocontrollable materials, devices, and processes.

Funder

Ministerstwo Edukacji i Nauki

Einstein Stiftung Berlin

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

Reference208 articles.

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