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手性荧光光开关:将手性与荧光耦合到手性光开关中用于光子学应用。

Chiral Fluorescent Photoswitches: Coupling of Chirality and Fluorescence into Photoswitches for Photonic Applications.

作者信息

Meng Xianyu, Lin Siyang, Guo Jinbao

机构信息

Key Laboratory of Carbon Fibers and Functional Polymers, Ministry of Education, and College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

Key Laboratory of New Energy and Rare Earth Resource Utilization of State Ethnic Affairs Commission, School of Physics and Materials Engineering, Dalian Minzu University, 18 Liaohe West Road, Dalian 116600, China.

出版信息

Acc Chem Res. 2025 Aug 19;58(16):2586-2599. doi: 10.1021/acs.accounts.5c00330. Epub 2025 Jul 30.

Abstract

ConspectusMultifunctional integrated molecules are increasingly pivotal in various cutting-edge fields including materials science, nanotechnology, and biomedicine. Among these molecules, chiral fluorescent photoswitches (CFPSs) are a class of functional organic molecules that seamlessly integrate chiral, fluorescent, and photoresponsive characteristics. These properties, when combined, allow for a fascinating array of variations in chirality and fluorescence due to the structural changes induced by photoisomerization. The types of photoisomerization further influence these changes, resulting in a wide range of outcomes. In this Account, we present the progressive results of our ongoing research in the field of CFPSs, with a special emphasis on the dynamic regulation and photonics properties of chiral liquid crystal (LC) systems constructed with these molecular switches. To date, we have developed five different types of CFPSs based on α-cyanostilbenes, dicyanodistyrylbenzene, diaryldicyanoethene, sulfonated DAE, and azobenzene, respectively. We have actively explored the molecular engineering of these CFPSs, the performances of the chiral LC assemblies, and the constructed photonic devices that broaden their potential applications.The main focuses of this Account are structured around the concept of the "molecule engineering-properties-device applications" of the CFPSs. Crucially, CFPSs have the unique ability to amalgamate chiral and fluorescent properties within this photomodulation, serving as an effective medium to achieve sophisticated photomodulation effects. Given this, we focus on the molecular engineering of these CFPSs based on cyano positions, aryl modifications, linking sites, and binaphthyl handedness, which strongly affect the fluorescence intensity, emission wavelength, chiral-induction ability, photoisomerization conversion rate, and reversibility. The comprehensive analysis holds significant implications for guiding the future design and optimization of CFPSs. Furthermore, LC is a versatile enabling material that can integrate CFPSs to create self-assembled 1D helical superstructures known as cholesteric LC (CLC) or 3D blue-phase (BP) cubic structure systems. We reveal that these LC systems not only enable cross-scale regulation of CFPSs but also serve as highly efficient photonic devices in their own right. Such advanced photonic devices we constructed have the ability to adjust both the reflected color, the fluorescence properties, and circularly polarized luminescence (CPL), demonstrating significant potential for visual and smart applications.These systematic investigations emphasize the importance of the photoswitches' integrated chirality and fluorescence for optimized molecular design and fabrication, intrinsic regulation mechanism, and advanced photonic applications. Further systematic investigations, including molecular simulation, performance stability, and device friendship, will contribute to the rapid development of CFPSs-LC photonic devices that are suitable for practical applications.

摘要

综述

多功能集成分子在包括材料科学、纳米技术和生物医学在内的各种前沿领域中日益关键。在这些分子中,手性荧光光开关(CFPSs)是一类功能性有机分子,它无缝整合了手性、荧光和光响应特性。这些特性相结合,由于光异构化引起的结构变化,使得手性和荧光出现一系列引人入胜的变化。光异构化的类型进一步影响这些变化,从而产生广泛的结果。在本综述中,我们展示了我们在CFPSs领域正在进行的研究的进展成果,特别强调了用这些分子开关构建的手性液晶(LC)系统的动态调控和光子学特性。迄今为止,我们分别基于α-氰基苯乙烯、二氰基二苯乙烯、二芳基二氰基乙烯、磺化二芳基二氰基乙烯和偶氮苯开发了五种不同类型的CFPSs。我们积极探索了这些CFPSs的分子工程、手性LC组装体的性能以及构建的光子器件,这些拓宽了它们的潜在应用。

本综述的主要重点围绕CFPSs的“分子工程-性质-器件应用”概念展开。至关重要的是,CFPSs在这种光调制过程中具有独特的能力,能够融合手性和荧光特性,作为实现复杂光调制效果的有效介质。鉴于此,我们基于氰基位置、芳基修饰、连接位点和联萘手性对这些CFPSs进行分子工程研究,这些因素会强烈影响荧光强度、发射波长、手性诱导能力、光异构化转化率和可逆性。全面分析对于指导CFPSs未来的设计和优化具有重要意义。此外,LC是一种通用的赋能材料,可以整合CFPSs以创建自组装的一维螺旋超结构,即胆甾相LC(CLC)或三维蓝相(BP)立方结构系统。我们发现这些LC系统不仅能够实现CFPSs的跨尺度调控,而且本身就是高效的光子器件。我们构建的这种先进光子器件能够调节反射颜色、荧光特性和圆偏振发光(CPL),在视觉和智能应用方面显示出巨大潜力。

这些系统研究强调了光开关的集成手性和荧光对于优化分子设计与制造、内在调控机制以及先进光子应用的重要性。进一步的系统研究,包括分子模拟、性能稳定性和器件友好性,将有助于适用于实际应用的CFPSs-LC光子器件的快速发展。

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