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具有宽可调圆偏振发光的胆甾相液晶聚醚。

Cholesteric Liquid Crystalline Polyether with Broad Tunable Circularly Polarized Luminescence.

作者信息

Wei Wei, Farooq Muhammad Amjad, Xiong Huiming

机构信息

Department of Polymer Science, School of Chemistry and Chemical Engineering, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.

Center for Soft Matter and Interdisciplinary Sciences, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.

出版信息

Langmuir. 2021 Oct 12;37(40):11922-11930. doi: 10.1021/acs.langmuir.1c02144. Epub 2021 Oct 3.

Abstract

Strong circularly polarized luminescence (CPL) with high purity and broad tunability was achieved in a new type of polyether-based cholesteric liquid crystalline (CLC) copolymers comprising chiral cholesteryl, nematic mesogens, and cross-linkable moieties. The phase boundary diagram of the copolymers was constructed, wherein the CLC phase in a wide composition and temperature window down to room temperature was achieved. Furthermore, reflection colors across the infrared and visible light regions can be continuously tuned by altering composition or temperature, which can be further fixed in the flexible CLC elastomer by photo-cross-linking. Introducing achiral dyes in the CLC thin films can generate strong CPL with distinct handedness and high dissymmetry factors (). Particularly, the left-handed full-color CPL is obtained by selective circularly polarized scattering in the spectral region outside the band gap of the CLC thin film, and the right-handed CPL with up to -1.05 is achieved within the band gap of the CLC thin film following the selective circularly polarized reflection mechanism. This type of CPL active material is expected to have potential applications in liquid crystal display and photonics.

摘要

在一种新型的基于聚醚的胆甾型液晶(CLC)共聚物中实现了具有高纯度和宽可调性的强圆偏振发光(CPL),该共聚物包含手性胆甾醇基、向列型液晶元以及可交联部分。构建了共聚物的相边界图,其中在宽组成和温度窗口直至室温下都实现了CLC相。此外,通过改变组成或温度可以连续调节红外和可见光区域的反射颜色,并且可以通过光交联将其进一步固定在柔性CLC弹性体中。在CLC薄膜中引入非手性染料可以产生具有明显旋向性和高不对称因子()的强CPL。特别地,通过在CLC薄膜带隙之外的光谱区域进行选择性圆偏振散射获得左旋全色CPL,并且遵循选择性圆偏振反射机制在CLC薄膜带隙内实现了高达-1.05的右旋CPL。这种类型的CPL活性材料有望在液晶显示和光子学中具有潜在应用。

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