光电开关
化学
光异构化
光致变色
光化学
超分子化学
向光性
嗜光蛋白
红灯
发色团
光生物学
光电子学
异构化
蓝光
有机化学
分子
光学
材料科学
物理
隐色素
催化作用
基因
生物
植物
生物化学
生物钟
作者
Stefan Thumser,Laura Köttner,Nadine Hoffmann,Péter Mayer,Henry Dube
摘要
Red-light responsiveness of photoswitches is a highly desired property for many important application areas such as biology or material sciences. The main approach to elicit this property uses strategic substitution of long-known photoswitch motives such as azobenzenes or diarylethenes. Only very few photoswitches possess inherent red-light absorption of their core chromophore structures. Here, we present a strategy to convert the long-known purple indirubin dye into a prolific red-light-responsive photoswitch. In a supramolecular approach, its photochromism can be changed from a negative to a positive one, while at the same time, significantly higher yields of the metastable E-isomer are obtained upon irradiation. E- to Z-photoisomerization can then also be induced by red light of longer wavelengths. Indirubin therefore represents a unique example of reversible photoswitching using entirely red light for both switching directions.
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