Yu Xiaoxiao, Chen Linfeng, Liu Qin, Liu Xiaoqing, Qiu Zhenduo, Zhang Xinhai, Zhu Meifang, Cheng Yanhua
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, P. R. China.
Adv Sci (Weinh). 2025 Jan;12(4):e2412778. doi: 10.1002/advs.202412778. Epub 2024 Dec 4.
Circularly polarized luminescence (CPL) materials with rich optical information are highly attractive for optical display, information storage, and encryption. Although previous investigations have shown that external force fields can induce CPL activity in nonchiral systems, the unique role of macroscopic external forces in inducing CPL has not been demonstrated at the level of molecule or molecular aggregate. Here, a canonical example of CPL generation by mechanical twisting in an achiral system consisting of a polymer matrix with embedded fluorescent molecules is presented. By carefully adjusting the twisting parameters in time and space, in conjunction with circular dichroism (CD), CPL, and 2D wide-angle X-ray scattering (2D WAXS) studies, a twisting-induced top-down chiral transfer mechanism derived from the molecular-level asymmetric rearrangement of fluorescent units is elucidated within polymers under external torsional forces. This top-down chiral transfer provides a simple, scalable, and versatile mechanical twisting strategy for the fabrication of CPL materials, allowing for fabricating full-color and handedness-tunable CPL fibers, where the macroscopic twist direction determines the CPL handedness. Moreover, the weavability of CPL fibers greatly extend their applications in anti-counterfeit encryption, as demonstrated by using embroidery techniques to design multilevel encryption patterns.
具有丰富光学信息的圆偏振发光(CPL)材料在光学显示、信息存储和加密方面极具吸引力。尽管先前的研究表明外力场可以在非手性系统中诱导CPL活性,但宏观外力在诱导CPL方面的独特作用尚未在分子或分子聚集体层面得到证实。在此,展示了一个由嵌入荧光分子的聚合物基质组成的非手性系统中通过机械扭转产生CPL的典型例子。通过在时间和空间上仔细调整扭转参数,并结合圆二色性(CD)、CPL和二维广角X射线散射(2D WAXS)研究,阐明了在外加扭力作用下聚合物内部源自荧光单元分子水平不对称重排的扭转诱导自上而下的手性转移机制。这种自上而下的手性转移为CPL材料的制备提供了一种简单、可扩展且通用的机械扭转策略,能够制造全彩色且手性可调的CPL纤维,其中宏观扭转方向决定CPL的手性。此外,CPL纤维的可编织性极大地扩展了它们在防伪加密方面的应用,如通过刺绣技术设计多级加密图案所展示的那样。