系统间交叉
激光阈值
激发态
人口倒转
光电子学
材料科学
人口
光化学
激光器
增益开关
荧光
化学
原子物理学
光学
物理
单重态
波长
人口学
社会学
作者
Zhonghao Zhou,Chan Qiao,Kang Wang,Lu Wang,Jie Liang,Qian Peng,Zhiyou Wei,Haiyun Dong,Chuang Zhang,Zhigang Shuai,Yongli Yan,Yong Sheng Zhao
标识
DOI:10.1002/ange.202008940
摘要
Abstract Thermally activated delayed‐fluorescent (TADF) materials are anticipated to overcome triplet‐related losses towards electrically driven organic lasers. Thus far, contributions from triplets to lasing have not yet been experimentally demonstrated owing to the limited knowledge about the excited‐state processes. Herein, we experimentally achieve reverse intersystem crossing (RISC)‐boosted lasing in organic microspheres with uniformly dispersed TADF emitters. In these materials, triplets are continuously converted to radiative singlets through RISC, giving rise to reduced losses in stimulated emission. The involvement of regenerated singlets in population inversion results in a thermally activated lasing; that is, the lasing intensity increases with increasing temperature, accompanied by accelerated depletion of the excited‐state population. Benefiting from the suppression of triplet accumulations by RISC processes, a high‐repetition‐rate microlaser was achieved.
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