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具有可调颜色的胆甾相球形反射器,由单畴纤维素纳米晶体微壳制成。

Cholesteric Spherical Reflectors with Tunable Color from Single-Domain Cellulose Nanocrystal Microshells.

作者信息

Geng Yong, Honorato-Rios Camila, Noh JungHyun, Lagerwall Jan P F

机构信息

Department of Physics and Materials Science, University of Luxembourg, Luxembourg, L-1511, Luxembourg.

Sustainable and Bio-inspired Materials Department, Max Planck Institute of Colloids and Interfaces, Am Mühlenberg 1, 14476, Potsdam, Germany.

出版信息

Adv Mater. 2024 Feb;36(8):e2305251. doi: 10.1002/adma.202305251. Epub 2023 Dec 8.

Abstract

The wavelength- and polarization-selective Bragg reflection of visible light exhibited by films produced by drying cholesteric liquid crystal (CLC) suspensions of cellulose nanocrystals (CNCs) render these biosourced nanoparticles highly potent for many optical applications. While the conventionally produced films are flat, the CLC-derived helical CNC arrangement would acquire new powerful features if given spherical curvature. Drying CNC suspension droplets does not work, because the onset of kinetic arrest in droplets of anisotropic colloids leads to severe buckling and loss of spherical shape. Here, these problems are avoided by confining the CNC suspension in a spherical microshell surrounding an incompressible oil droplet. This prevents buckling, ensures strong helix pitch compression, and produces single-domain cholesteric spherical reflector particles with distinct visible color. Interestingly, the constrained shrinkage leads to spontaneous puncturing, leaving every particle with a single hole through which the inner oil phase can be extracted for recycling. By mixing two different CNC types at varying fractions, the retroreflection color is tuned throughout the visible spectrum. The new approach adds a versatile tool in the quest to utilize bioderived CLCs, enabling spherically curved particles with the same excellent optical quality and smooth surface as previously obtained only in flat films.

摘要

通过干燥纤维素纳米晶体(CNC)的胆甾型液晶(CLC)悬浮液制备的薄膜所展现出的可见光波长和偏振选择性布拉格反射,使这些生物源纳米颗粒在许多光学应用中具有很高的潜力。虽然传统制备的薄膜是平的,但如果赋予胆甾型液晶衍生的螺旋状CNC排列球形曲率,将会获得新的强大特性。干燥CNC悬浮液滴是行不通的,因为各向异性胶体液滴中动力学停滞的开始会导致严重的屈曲和球形的丧失。在这里,通过将CNC悬浮液限制在围绕不可压缩油滴的球形微壳中来避免这些问题。这可以防止屈曲,确保强烈的螺旋螺距压缩,并产生具有独特可见颜色的单畴胆甾型球形反射颗粒。有趣的是,受限收缩会导致自发穿孔,使每个颗粒都有一个单孔,通过该孔可以提取内部油相进行回收利用。通过以不同比例混合两种不同类型的CNC,可以在整个可见光谱范围内调节后向反射颜色。这种新方法为利用生物衍生的胆甾型液晶增加了一种通用工具,能够制备出具有与以前仅在平膜中获得的相同优异光学质量和光滑表面的球形弯曲颗粒。

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