吖啶酮
磷光
堆积
反平行(数学)
三重态
激发态
光化学
取代基
位阻效应
化学
荧光
咔唑
消灭
材料科学
结晶学
分子
立体化学
有机化学
原子物理学
物理
磁场
量子力学
作者
Ehsan Hamzehpoor,Cory Ruchlin,Yuze Tao,Jorge Ramos-Sánchez,Hatem M. Titi,Gonzalo Cosa,Dmitrii F. Perepichka
标识
DOI:10.1021/acs.jpclett.1c01552
摘要
Organic room temperature phosphorescent (ORTP) compounds have recently emerged as a promising class of emissive materials with a multitude of potential applications. However, the number of building blocks that give rise to efficient ORTP materials is still limited, and the rules for engineering phosphorescent properties in organic solids are not well understood. Here, we report ORTP in a series of N-substituted acridone derivatives with electron-donating, electron-withdrawing, and sterically bulky substituents. X-ray crystallography shows that the solid-state packing varies progressively between coparallel and antiparallel π-stacking and separated π-dimers, depending on the size of the substituent. The detailed photophysical studies supported by DFT calculations reveal complex dynamics of singlet and triplet excited states, depending on the electronic effects of substituents and solid-state packing. The programmable molecular packing provides a lever to control the triplet–triplet annihilation that is manifested as delayed fluorescence in acridone derivatives with continuous (both parallel and antiparallel) π-stacking.
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