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Assembly of Wiseana Iridovirus: Viruses for Colloidal Photonic Crystals

机译:Wiseana虹膜病毒的大会:胶体光子晶体的病毒。

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摘要

In vitro assembly of Wiseana iridescent virus (WIV) yields iridescent pellets and films with structural color more vivid than in the native insect. WIV is icosahedral in shape, 140 nm in diameter, with 30 nm long fibrils attached to the outer surface, and exhibits a surface charge ca. 1/6th that of a comparable polymer colloid. The low surface charge and tethered chains on the virus surface allow the facile modification of the interparticle distance. Directed sedimentation yields predominantly an amorphous liquid-like packing of the virus. Such samples exhibit a broad reflection band that is angle independent and for which the broad maximum can be reversibly shifted from blue towards red with increased hydration. Slow sedimentation and flow-assisted assembly methods produce thin films with a polycrystalline morphology that exhibit narrower, more intense reflectivity peaks, which are hydration and angle dependent. This study points toward the potential of viral particles for photonic crystals where their unique structural features (icosahedral symmetry, extreme monodispersity, precise surface functionalization, and tethered surface chains of low surface-charge density) may lead to superior control of optical properties of their assembled arrays.
机译:Wiseana虹彩病毒(WIV)的体外组装产生的虹彩小球和薄膜的结构颜色比本地昆虫更鲜艳。 WIV的形状为二十面体,直径为140 nm,长30 nm的原纤维附着在外表面,并且表面电荷约为。聚合物胶体的1/6。病毒表面的低表面电荷和束缚链可轻松改变粒子间的距离。定向沉淀主要产生病毒的无定形液体状堆积。这样的样品表现出宽的反射带,该反射带与角度无关,并且随着水合作用的增加,宽的最大值可以从蓝色可逆地转换为红色。缓慢的沉降和流辅助组装方法将产生具有多晶形态的薄膜,这些薄膜呈现出更窄,更强烈的反射峰,这些峰与水合和角度有关。这项研究指出了病毒粒子在光子晶体中的潜力,因为其独特的结构特征(二十面体对称性,极高的单分散性,精确的表面功能化以及低表面电荷密度的束缚表面链)可能会导致对组装分子的光学性能的更好控制数组。

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