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基于淀粉样蛋白的液晶产生的结构色。

Structural Colors from Amyloid-Based Liquid Crystals.

作者信息

Jin Tonghui, Yuan Ye, Bagnani Massimo, Wu Chao, Liu Bin, Mezzenga Raffaele

机构信息

Department of Health Sciences and Technology, ETH Zürich, Zürich, 8092, Switzerland.

School of Food Science and Technology, Dalian Polytechnic University, Dalian, 116034, China.

出版信息

Adv Mater. 2024 Feb;36(8):e2308437. doi: 10.1002/adma.202308437. Epub 2023 Dec 10.

Abstract

The helical periodicity and layered structure in cholesteric liquid crystals (CLCs) may be tuned to generate structural color according to the Bragg's law of diffraction. A wide range of natural-based materials such as condensed DNA, collagen, chitin, cellulose, and chiral biopolymers exhibit cholesteric phases with left-handed helixes and ensued structural colors. Here, the possibility of using amyloid CLCs is reported to prepare films with iridescent color reflection and opposite handedness. Right-handed CLCs assembled by left-handed amyloid fibrils are dried into layered structures with variable pitch controlled by the addition of glucose. Circularly polarized light with the same handedness of amyloid CLCs helix is reflected in the Bragg regime. Varying the drying speed leads to the switching between films with a rainbow-like color gradient and large area uniform color. It is confirmed that the origin of the colors derives from the layered structures of the amyloid CLCs, given the negligeable birefringence of the films, calculated from optical rotatory dispersion. These findings provide a facile approach to constructing biosourced cholesteric materials and introduce an original class of proteinaceous materials for the generation of structural colors from right-handed circularly polarized light.

摘要

胆甾相液晶(CLCs)中的螺旋周期性和层状结构可根据布拉格衍射定律进行调节,以产生结构色。多种天然材料,如凝聚态DNA、胶原蛋白、几丁质、纤维素和手性生物聚合物,都呈现出具有左手螺旋的胆甾相以及随之而来的结构色。在此,报道了使用淀粉样胆甾相液晶制备具有虹彩颜色反射和相反手性的薄膜的可能性。由左手淀粉样纤维组装而成的右手胆甾相液晶被干燥成层状结构,通过添加葡萄糖来控制其可变螺距。与淀粉样胆甾相液晶螺旋具有相同手性的圆偏振光在布拉格区域被反射。改变干燥速度会导致薄膜在具有彩虹般颜色梯度和大面积均匀颜色之间切换。从旋光色散计算得出,鉴于薄膜的双折射可忽略不计,证实了颜色的来源是淀粉样胆甾相液晶的层状结构。这些发现为构建生物源胆甾相材料提供了一种简便方法,并引入了一类用于从右旋圆偏振光产生结构色的新型蛋白质材料。

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