磷光
无定形固体
结晶
光化学
化学
材料科学
有机化学
荧光
量子力学
物理
作者
Wei Xu,Yaguo Yu,Xiaonan Ji,Huarui Zhao,Jin‐Ming Chen,Yanyan Fu,Huimin Cao,Qingguo He,Jiangong Cheng
标识
DOI:10.1002/anie.201906881
摘要
The stability of pure organic room-temperature phosphorescent (RTP) materials in air has been a research hotspot in recent years. Without crystallization or encapsulation, a new strategy was proposed to obtain self-stabilized organic RTP materials, based on a complete ionization of a photo-induced charge separation system. The ionization of aromatic phenol 4-carbazolyl salicylaldehyde (CSA) formed a stable H-bonding anion-cation radical structure and led to the completely amorphous CSA-I film. Phosphorescent lifetimes as long as 0.14 s at room temperature and with direct exposure to air were observed. The emission intensity was also increased by 21.5-fold. Such an amorphous RTP material reconciled the contradiction between phosphorescence stability and vapor permeability and has been successfully utilized for peroxide vapor detection.
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