二芳基乙烯
光致变色
分子内力
化学
光化学
反应性(心理学)
分子
氢键
放松(心理学)
化学物理
计算化学
衍生工具(金融)
反应机理
质子
分子开关
量子
异构化
纳米技术
氢
芳香性
电子结构
分子内反应
作者
Dan Zhang,Jiashuo Yang,Xinyu Wang,Meiling Cheng,Zuzhi Chen,Yunfan Yang
出处
期刊:Langmuir
[American Chemical Society]
日期:2026-03-03
卷期号:42 (10): 7112-7127
标识
DOI:10.1021/acs.langmuir.5c05421
摘要
Diarylethene, as a classical photochromic molecule, often suffers from limitations in its reactive efficiency due to competitive nonradiative decay pathways. The competition between excited-state intramolecular proton transfer (ESIPT) and photocyclization is central to the function of the novel diarylethene derivative studied here. Incorporating an intramolecular hydrogen bond into the π-linker is found to advance ESIPT, which effectively suppresses photocyclization by providing a dominant nonradiative relaxation pathway. This mechanism is unraveled through systematic quantum chemical calculations of the ground- and excited-state potential-energy curves, with reaction barriers quantified by transition-state theory. The analyses of excited-state aromaticity and electronic structure provide a fundamental understanding of the reactivity and clarify the different properties and functions of molecules before and after cyclization. Disrupting the hydrogen bond via esterification conclusively validates the mechanism: it blocks the ESIPT pathway, turns off the nonradiative channel, and enables the efficient photocyclization and photochromic properties. This study elucidates a novel molecular-level strategy for modulating the photocyclization of diarylethene and establishes a foundational strategy for crafting intelligent photoresponsive materials.
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