发光
对映体药物
激进的
材料科学
量子产额
外消旋化
光化学
激发态
光致发光
手性(物理)
四苯乙烯
圆极化
光电子学
兴奋剂
发光测量
低语长廊波浪
持续发光
化学
聚苯乙烯
共振(粒子物理)
天线效应
咔唑
作者
Kazuhiro Nakamura,Kenshiro Matsuda,Kosuke Anraku,Keiko Yamaoka,Taisuke Matsumoto,Fumitaka Ishiwari,Wataru Ota,Emiko Fujiwara,Tohru Sato,Yoshitaka Inoue,Soh Kushida,Yohei Yamamoto,Takuya Hosokai,Ken Albrecht
标识
DOI:10.26434/chemrxiv.10001675/v1
摘要
Luminescent radicals are an emerging class of materials for organic electronics, bioimaging, and quantum applications. Circularly polarized luminescence (CPL) from luminescent radicals with propeller-type chirality remains challenging because it is difficult to simultaneously achieve high photoluminescence quantum yield (PLQY), high stability, and high racemization barriers. A series of brominated chiral luminescent radicals, CzTTBrM, 2CzTTBrM, and 3CzTTBrM, was obtained by attaching carbazole donors to TTBrM. The donor-acceptor-type design induces red to near-infrared (NIR) emission via charge transfer (CT) excited states with remarkably high PLQY (up to 74%) and high photostability. The new radicals possess high racemization barriers (ΔG ‡ (353K) 27.9-29.1 kcal/mol), allowing the isolation of enantiopure compounds at room temperature. The enantiopure radicals exhibit CPL with broad emission across the red to NIR range (650-800 nm) and display BCPL values (0.19-0.37), nearly two orders of magnitude higher than that of TTBrM (BCPL = 0.007). Moreover, doping these radicals into polystyrene microspheres produces whispering gallery mode (WGM) resonances, marking the first observation of WGM emission from luminescent radicals. This strategy establishes a versatile platform for integrating spin, chirality, and luminescence, offering new opportunities for applications in electroluminescence, bioimaging, and quantum photonics.
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