光子上转换
发光
四苯乙烯
材料科学
光电子学
偶极子
圆极化
分子
量子
分子物理学
超短脉冲
量子点
光子
化学物理
能量转移
极化(电化学)
激光器
发色团
系统间交叉
化学
共发射极
辐射传输
敏化
自发辐射
量子效率
物理
作者
Wenfei Liang,Shaokuan Gong,Bo Yang,Jianning Feng,Kin Ting Chang,Zhiyu Wang,Xihan Chen,Zhigang Yu,Haobin Wang,Haipeng Lu
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-09-22
卷期号:64 (47): e202515506-e202515506
被引量:2
标识
DOI:10.1002/anie.202515506
摘要
The potential of chiral organic molecules exhibiting circularly polarized luminescence (CPL) for practical applications hinges on the luminescence efficiency and dissymmetry factor (glum). However, surpassing the molecular limitations of dissymmetry factors remains a significant challenge, primarily due to the different parity selection rules governing the electric and magnetic dipole moments in chiral molecules. In this study, we tackle this inherent constraint by designing a triplet sensitization photon upconversion system using nontoxic CuInS2 quantum dots (QDs) photosensitizer. We demonstrate a 43-fold amplification of CPL in QD-sensitized triplet fusion process compared to the direct photoexcitation. Notably, a high green-to-blue upconversion quantum efficiency of 12.7 ± 0.19% (normalized to 100%) was achieved. The dissymmetry factors of QD-sensitized upconversion CPL outperform previous reports based on molecular photosensitizers. The observed large glum, according to our modeling and first-principles calculations, originates from the unique structural rearrangement of the chiral emitter during the ultrafast triplet energy transfer process. Our work provides a new strategy and mechanistic insights for CPL amplification through triplet sensitization.
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