荧光
液晶
材料科学
分子内力
光化学
激发态
量子产额
斯托克斯位移
分子
化学物理
发光
光电子学
化学
光学
有机化学
原子物理学
物理
作者
Wanying Zhang,Tsuneaki Sakurai,Mika Aotani,Go Watanabe,Hiroyuki Yoshida,Vikas S. Padalkar,Yusuke Tsutsui,Daisuke Sakamaki,Masanori Ozaki,Shu Seki
标识
DOI:10.1002/adom.201801349
摘要
Abstract Fluorescence via excited‐state intramolecular proton transfer (ESIPT) provides strong light emission with a large Stokes shift and environment‐sensitive unique spectral patterns. Particular systems including 2‐(2‐hydroxyphenyl)benzothiazole (HBT) serve as efficient solid‐state emitters with the ESIPT mechanism and aggregation‐induced emission enhancement (AIEE) property, but have not been used for liquid crystalline (LC) materials. Here, rod‐shaped fluorescent LCs with ESIPT characters are newly developed based on the HBT motif. The design of the targeted molecules is in line with a simple design principle: a molecule with an alkyl tail, rigid ring, and active HBT core. The LC C 6 Ph‐HBT is highly luminescent in the solid state with an absolute fluorescence quantum yield (Φ FL ) up to 0.39 and exhibits anisotropic fluorescence in its nematic LC phase. C 6 Ph‐HBT is miscible up to 6 wt% with a conventional room‐temperature (r.t.) nematic LC 4‐cyano‐4′‐pentylbiphenyl (5CB), allowing homogeneous fluorescent r.t. LCs. The LC mixture 5CB / C 6 Ph‐HBT shows Φ FL of 0.26 even in the nonaggregated state, and responds to an electric field with dynamic modulation of not only the optical transparency but also polarized fluorescence. The interplay of highly efficient fluorescence from ESIPT cores and their visible transparency is encouraging for future optical applications of the present molecular systems.
科研通智能强力驱动
Strongly Powered by AbleSci AI