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用于实现全色和白色圆偏振发光的液晶超分子组装体中的三级手性转移与放大

Three-Level Chirality Transfer and Amplification in Liquid Crystal Supramolecular Assembly for Achieving Full-Color and White Circularly Polarized Luminescence.

作者信息

Wang Xujie, Gao Xinhui, Zhong Hai, Yang Kai, Zhao Biao, Deng Jianping

机构信息

State Key Laboratory of Chemical Resource Engineering, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.

出版信息

Adv Mater. 2025 Jan;37(1):e2412805. doi: 10.1002/adma.202412805. Epub 2024 Nov 2.

Abstract

Chiral liquid crystal supramolecular assembly provides an ideal strategy for constructing excellent circularly polarized luminescence (CPL) materials. However, the chirality transfer in chiral liquid crystals normally occurs at two levels from the configurational chirality to the supramolecular phase chirality. The more precise and more levels of chirality transmission are fascinating but remain challenging. The present work reports the first success of three-level chirality transfer and amplification from configurationally point chirality of small molecules to conformationally helical chirality of helical polymers and finally to supramolecular phase chirality of cholesteric liquid crystals composed of chiral nonfluorescent polymers (P46) and nematic liquid crystals. Noticeably, the helical twisting power of P46 is five-fold larger than its monomer. Full-color and white CPL with maximum luminescence dissymmetry factor up to 1.54 and photoluminescence quantum yield up to 63.8% are realized utilizing helical supramolecular assembly combined with selective reflection mechanism. Also significantly, the electrically stimuli-responsive CPL switching device as well as anti-counterfeiting security, information encryption, and chiral logic gate applications are developed. This study deepens the understanding of chirality transfer and amplification across different hierarchical levels.

摘要

手性液晶超分子组装为构建优异的圆偏振发光(CPL)材料提供了一种理想策略。然而,手性液晶中的手性转移通常在两个层面发生,即从构型手性到超分子相手性。更精确且更多层次的手性传递引人入胜,但仍具有挑战性。本工作报道了首次成功实现从小分子的构型点手性到螺旋聚合物的构象螺旋手性,最终到由手性非荧光聚合物(P46)和向列型液晶组成的胆甾相液晶的超分子相手性的三级手性转移和放大。值得注意的是,P46的螺旋扭曲能力比其单体大五倍。利用螺旋超分子组装结合选择性反射机制,实现了最大发光不对称因子高达1.54且光致发光量子产率高达63.8%的全色和白色CPL。同样重要的是,开发了电刺激响应型CPL开关器件以及防伪安全、信息加密和手性逻辑门应用。这项研究加深了对跨不同层次水平的手性转移和放大的理解。

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