磷光
分子间力
化学
化学物理
Crystal(编程语言)
跃迁偶极矩
结晶
分子
偶极子
光化学
材料科学
有机化学
物理
程序设计语言
荧光
量子力学
计算机科学
作者
Huili Ma,Wen Shi,Jiajun Ren,Wenqiang Li,Qian Peng,Zhigang Shuai
标识
DOI:10.1021/acs.jpclett.6b01156
摘要
Room temperature phosphorescence (RTP) from pure organic material is rare due to the low phosphorescence quantum efficiency. That is why the recent discovery of crystallization induced RTP for several organic molecules aroused strong interests. Through a combined quantum and molecular mechanics CASPT2/AMBER scheme taking terephthalic acid (TPA) as example, we found that electrostatic interaction not only can induce an enhanced radiative decay T1 → S0 through the dipole-allowed S1 intermediate state, but also can hinder the nonradiative decay process upon crystallization. From gas phase to crystal, the nature of S1 state is converted to (1)(π,π*) from (1)(n,π*) character, enhancing transition dipole moment and serving as an efficient intermediate radiative pathway for T1 → S0 transition, and eventually leading to a boosted RTP. The intermolecular packing also blocks the nonradiative decay channel of the high-frequency C═O stretching vibration with large vibronic coupling, rather than the conventional low-frequency aromatic rotation in crystal. This mechanism also holds for other organic compounds that contain both ketones and aromatic rings.
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