双稳态
位阻效应
分子间力
光电开关
分子内力
化学物理
分子开关
热稳定性
分子
化学
光异构化
材料科学
纳米技术
热的
超分子化学
光子学
光化学
共价键
自由度(物理和化学)
液晶
非共价相互作用
热涨落
作者
Huiqin Bi,Yanyu Zhao,Shengyong Deng,Xinwei Zhang,Peifa Wei
标识
DOI:10.1038/s41467-026-69516-8
摘要
Developing photoswitches with precise control over reaction pathways, visible-light responsiveness, and robust thermal stability remains a significant challenge in photoresponsive materials. Here we report a class of sterically frustrated dicyanostilbene-based molecular photoswitches that achieve exclusive, efficient, and robust visible-light-triggered E/Z photoisomerization in both solution and aggregated states. They function as bistable switches with thermal half-lives reaching up to 1817 years. Furthermore, their pronounced polarity and solubility differences between isomers, together with photofluorochromic behavior, enable facile separation, real-time switching monitoring, and photonic encryption demonstrations. Single-crystals and theoretical calculation elucidates the dual steric control mechanism: in solution, molecular distortion of the Z-isomer suppresses intramolecular photocyclization while stabilizing the Z-conformation to enable ultralong thermal half-lives; in the aggregated state, isolated and loosely packed molecules inhibit intermolecular photocycloaddition and concurrently provide the free volume required for isomerization. This work advances the design of bistable dicyanostilbene photoswitches, offering a versatile platform for green chemistry and smart materials.
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