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光致变色杂环稠合噻吩并[3,2-b]磷杂环氧化物作为可见光开关,不牺牲光致变色效率。

Photochromic Heterocycle-Fused Thieno[3,2-b]phosphole Oxides as Visible Light Switches without Sacrificing Photoswitching Efficiency.

机构信息

Institute of Molecular Functional Materials [Areas of Excellence Scheme, University Grant Committee (Hong Kong)] and Department of Chemistry, The University of Hong Kong , Pokfulam Road, Hong Kong, PR China.

出版信息

J Am Chem Soc. 2017 Oct 25;139(42):15142-15150. doi: 10.1021/jacs.7b08333. Epub 2017 Oct 13.

Abstract

A series of novel photochromic thieno[3,2-b]phosphole oxides has been shown to demonstrate photochromism without the need for the use of high-energy ultraviolet (UV) light irradiation while maintaining promising photochromic properties such as excellent thermal irreversibility, robust fatigue resistance, and high photoswitching efficiency. Promising visible light-induced photochromic properties have been realized by the new molecular design, in which various π systems have been incorporated into the weakly aromatic phosphole backbone instead of the conventional modification of the peripheral diaryl units that usually leads to a drastic reduction of the photochromic quantum yields (ϕ and ϕ < 0.01) or even a loss of the photochromic behavior. Excellent fatigue resistance has been observed for a representative compound with no apparent loss of photochromic reactivity over ten photochromic cycles by alternate irradiation with violet (ca. 410 nm) and green (ca. 500 nm) light with high photochromic quantum yields (ϕ = 0.87 and ϕ = 0.44), rendering it a new promising candidate as visible light photoswitches for various potential applications.

摘要

一系列新型的噻吩并[3,2-b]磷杂环氧化物已经被证明具有光致变色性,而无需使用高能紫外线(UV)光照射,同时保持了有前途的光致变色性能,如优异的热不可逆性、强大的抗疲劳性和高的光开关效率。通过新的分子设计实现了有前途的可见光诱导光致变色性能,其中各种π系统被引入到弱芳香性磷杂环骨架中,而不是通常导致光致变色量子产率(ϕ 和 ϕ < 0.01)急剧降低或甚至失去光致变色行为的传统外围二芳基单元的修饰。通过交替用紫光(约 410nm)和绿光(约 500nm)照射,观察到一种代表性化合物具有出色的抗疲劳性,在十个光致变色循环中,光致变色反应没有明显损失,并且具有高的光致变色量子产率(ϕ = 0.87 和 ϕ = 0.44),这使其成为各种潜在应用的可见光光开关的新的有前途的候选者。

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