磷光
分子内力
分子间力
发色团
化学
光化学
氢键
二苯甲酮
分子
Crystal(编程语言)
结晶学
有机化学
荧光
物理
量子力学
程序设计语言
计算机科学
作者
Wang Zhang Yuan,X. Y. Shen,Hui Zhao,Jacky W. Y. Lam,Li Tang,Ping Lü,Chunlei Wang,Yang Liu,Zhiming Wang,Qiang Zheng,Jing Sun,Yan Ma,Ben Zhong Tang
摘要
Phosphorescence has rarely been observed in pure organic chromophore systems at room temperature. We herein report efficient phosphorescence from the crystals of benzophenone and its derivatives with a general formula of (X-C6H4)2C═O (X = F, Cl, Br) as well as methyl 4-bromobenzoate and 4,4′-dibromobiphenyl under ambient conditions. These luminogens are all nonemissive when they are dissolved in good solvents, adsorbed on TLC plates, and doped into polymer films, because active intramolecular motions such as rotations and vibrations under these conditions effectively annihilate their triplet excitons via nonradiative relaxation channels. In the crystalline state, the intramolecular motions are restricted by the crystal lattices and intermolecular interactions, particularly C−H···O, N−H···O, C−H···X (X = F, Cl, Br), C−Br···Br−C, and C−H···π hydrogen bonding. The physical constraints and multiple intermolecular interactions collectively lock the conformations of the luminogen molecules. This structural rigidification effect makes the luminogens highly phosphorescent in the crystalline state at room temperature.
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