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智能双稳态配位络合物

Smart bistable coordination complexes.

作者信息

Xiao Xiong, Chen Zong-Ju, Varley Russell J, Li Cheng-Hui

机构信息

State Key Laboratory of Coordination Chemistry School of Chemistry and Chemical Engineering Collaborative Innovation Center of Advanced Microstructures Nanjing University Nanjing China.

Carbon Nexus at the Institute for Frontier Materials Deakin University Waurn Ponds Victoria Australia.

出版信息

Smart Mol. 2024 May 23;2(2):e20230028. doi: 10.1002/smo.20230028. eCollection 2024 Jun.

Abstract

Smart molecules have attracted increasing attention due to their transformative role in creating the next generation of smart structures and devices. Smart bistable coordination complexes are a class of functional complexes which have two stable states that can be reversibly switched in response to external stimuli. Such bistable molecules play a vital role in various applications, such as sensors, data storage, spintronics, smart windows, optical switches, information encryption and decryption, displays, actuators, etc. Herein, the recent research studies into the development of these smart bistable metal coordination complexes are reviewed. According to the different external stimuli, these smart bistable coordination systems have been classified and summarized, including light-responsive systems, thermally-responsive systems, electrically-responsive systems, mechanically-responsive systems, and some other cases. These systems are further subdivided according to the changes in signals (e.g., color, fluorescence, spin state, crystalline phase) under external stimuli. The design principles of each type of smart bistable metal complexes as well as their broad and innovative applications are comprehensively described. Finally, the challenges and opportunities in this field are briefly analyzed and discussed.

摘要

智能分子因其在创造下一代智能结构和器件方面的变革性作用而受到越来越多的关注。智能双稳态配位络合物是一类功能络合物,具有两个稳定状态,可响应外部刺激而可逆切换。这类双稳态分子在各种应用中发挥着至关重要的作用,如传感器、数据存储、自旋电子学、智能窗、光开关、信息加密与解密、显示器、致动器等。本文综述了近年来这些智能双稳态金属配位络合物发展的研究情况。根据不同的外部刺激,对这些智能双稳态配位体系进行了分类和总结,包括光响应体系、热响应体系、电响应体系、机械响应体系以及其他一些情况。这些体系根据外部刺激下信号(如颜色、荧光、自旋状态、晶相)的变化进一步细分。全面描述了各类智能双稳态金属络合物的设计原理及其广泛而创新的应用。最后,简要分析和讨论了该领域的挑战与机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8211/12118250/c4cdbddc6dfa/SMO2-2-e20230028-g009.jpg

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