光致变色
二芳基乙烯
可见光谱
光电开关
光电子学
材料科学
块(置换群论)
光化学
化学
纳米技术
几何学
数学
作者
Zhiwei Zhang,Wenhui Wang,Peipei Jin,Jingling Xue,Lu Sun,Jinhai Huang,Junji Zhang,He Tian
标识
DOI:10.1038/s41467-019-12302-6
摘要
Abstract Current development of light-responsive materials and technologies imposes an urgent demand on visible-light photoswitching on account of its mild excitation with high penetration ability and low photo-toxicity. However, complicated molecular design and laborious synthesis are often required for visible-light photoswitch, especially for diarylethenes. Worse still, a dilemma is encountered as the visible-light excitation of the diarylethene is often achieved at the expense of photochromic performances. To tackle these setbacks, we introduce a building-block design strategy to achieve all-visible-light photochromism with the triplet-sensitization mechanism. The simply designed diarylethene system is constructed by employing a sensitizer building-block with narrow singlet-triplet energy gap (ΔE ST ) to a diarylethene building-block. A significant improvement on the photochromic efficiency is obtained as well as an enhanced photo-fatigue resistance over those under UV irradiation. The balance between the visible-light excitation and decent photochromism is thus realized, promoting a guiding principle for the visible-light photochromism.
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