螺旋烯
荧光
量子产额
圆极化
圆二色性
产量(工程)
材料科学
光电子学
波长
光化学
量子效率
量子
分子物理学
光学
物理
化学
可见光谱
手性(物理)
发光二极管
表面改性
发射光谱
替代(逻辑)
结晶学
作者
Jieyu Li,Zekang Ma,Ruonan Yu,Xiaohe Miao,Chang Tang,Qiancheng Sun,Zexin Jin
标识
DOI:10.1002/anie.202525399
摘要
ABSTRACT Here we present a five‐step synthesis of two circular polarized light emitting donor–acceptor (D–A) [17]helicenes. The concise yet high‐yielding synthetic strategy was achieved by dedicated precursor design, with bond‐order control and substitution effects, for photocyclization. The structures and chiroptical properties of D–A [17]helicenes were comprehensively characterized by NMR, HRMS, UV–vis, CD, fluorescence and CPL spectroscopies, as well as single‐crystal X‐ray diffraction. By introducing D–A system into helicene scaffold, we demonstrate a nearly 10‐fold increase in fluorescence quantum yield compared to the unsubstituted [14]helicene, due to an enhanced fluorescence emission rate ( k f ). The emission wavelength can be tuned by introducing different functional groups. D–A [17]helicenes emitting circularly polarized light with a dissymmetry factor ( g lum ) of up to 1 × 10 −2 . DFT calculations reveal that D–A functionalization increases the oscillator strengths ( f ) thereby increasing k f . This highly efficient synthetic strategy not only facilitates the synthesis of the longest chiral helicene reported to date but also establishes design principles for developing chiral long helicenes with circularly polarized light emission.
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