化学
超分子化学
光热治疗
冠醚
发光
光化学
乙醚
光致发光
牙冠(牙科)
光热效应
纳米技术
高分子化学
组合化学
分子
晶体工程
树枝状大分子
地穴
分子工程
作者
Weijie Zhu,Yujuan Zhou,Bohan Zhao,Xiaolong Deng,Errui Li,Ning Liu,Kecheng Jie
摘要
Comprehensive Summary Modulating the photophysical of organic solid‐state functional materials is crucial for advancing supramolecular chemistry and materials science. Here, we present a π‐conjugation enhanced charge‐transfer strategy to turn on the photothermal conversion properties of crown ether cocrystals. Three crown ethers ( H 1 , H 2 , and H 3 ) bearing different π‐conjugated moieties are synthesized, exhibiting enhanced solid‐state luminescence upon increasing molecular conjugation. In addition, three sets of host–guest cocrystals are constructed via charge‐transfer (CT) interactions between these electron‐rich crown ethers and electron‐deficient 1,2,4,5‐tetracyanobenzene ( TCNB ). Based on the variations in CT interactions, the resulting cocrystals transform from primarily photoluminescent behavior to efficient photothermal conversion. Detailed structural and spectroscopic analyses reveal that the extent of π‐donor/π‐acceptor overlap within the cocrystals is the dominant factor governing their tunable photophysical properties.
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