准分子
堆积
单体
分子间力
分子
烷基
化学
光化学
结晶学
荧光
接受者
化学物理
聚合物
有机化学
物理
量子力学
凝聚态物理
作者
Xueru Shan,Weijie Chi,Hengbing Jiang,Zhangyuan Luo,Cheng Qian,Hongwei Wu,Yanli Zhao
标识
DOI:10.1002/ange.202215652
摘要
Abstract A design strategy that combines molecular conformation, alkyl chain length, and charge‐transfer effects has been developed to obtain conformational and stacking‐adaptable donor‐acceptor‐π type molecules for precisely regulating the monomer and excimer emission in a single luminous platform under different environments. These fluorophores can exhibit bright monomer emissions when they are in the dispersed state based on their planar conformation. However, when the luminous molecules with short alkyl side chains are in the crystalline state, their molecular conformation can become distorted, further inducing strong intermolecular interactions and staggered π‐π stacking for bright excimer emission. More importantly, their dispersed and aggregated states can be reversibly regulated in a phase‐change fatty acid matrix, to achieve temperature‐responsive fluorescence for temperature monitoring and advanced information encryption.
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