磷光
分子内力
激发态
化学
单重态
Atom(片上系统)
光化学
三重态
猝灭(荧光)
分子
辐射传输
基态
原子物理学
荧光
立体化学
物理
量子力学
嵌入式系统
有机化学
计算机科学
标识
DOI:10.1021/acs.jpclett.8b01711
摘要
The radiative rate ( kp) of the lowest triplet excited state (T1) and the nonradiative rate based on intramolecular vibrations at room temperature [ knr(RT)] from T1 for heavy atom-free conjugated structures are determined by considering the triplet yield and quenching rate from T1. Donor substitution did not strongly influence knr(RT) but greatly enhanced kp. The knr(RT) values were comparable between donor-substituted molecules and nonsubstituted molecules, which we explain by similar vibrational spin-orbit coupling (SOC) related to the transition from T1 to the ground state (S0). We attribute the enhancement of kp induced by donor substitution to the appearance of a large SOC between high-order singlet excited states (Sm) and T1 together with the large transition dipole moments of the Sm-S0 transitions. Knowledge of this mechanism is important for developing future efficient persistent room-temperature phosphorescence from doped aromatic materials and aromatic crystals.
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