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通过两亲性瓶刷状嵌段共聚物的可控胶束化制备角度无关的光子色素

Angular-Independent Photonic Pigments via the Controlled Micellization of Amphiphilic Bottlebrush Block Copolymers.

作者信息

Zhao Tianheng H, Jacucci Gianni, Chen Xi, Song Dong-Po, Vignolini Silvia, Parker Richard M

机构信息

Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, UK.

Tianjin Key Laboratory of Composite and Functional Materials, School of Materials Science and Engineering, Tianjin University, Tianjin, 300350, China.

出版信息

Adv Mater. 2020 Nov;32(47):e2002681. doi: 10.1002/adma.202002681. Epub 2020 Oct 16.

Abstract

Photonic materials with angular-independent structural color are highly desirable because they offer the broad viewing angles required for application as colorants in paints, cosmetics, textiles, or displays. However, they are challenging to fabricate as they require isotropic nanoscale architectures with only short-range correlation. Here, porous microparticles with such a structure are produced in a single, scalable step from an amphiphilic bottlebrush block copolymer. This is achieved by exploiting a novel "controlled micellization" self-assembly mechanism within an emulsified toluene-in-water droplet. By restricting water permeation through the droplet interface, the size of the pores can be precisely addressed, resulting in structurally colored pigments. Furthermore, the reflected color can be tuned to reflect across the full visible spectrum using only a single polymer (M  = 290 kDa) by altering the initial emulsification conditions. Such "photonic pigments" have several key advantages over their crystalline analogues, as they provide isotropic structural coloration that suppresses iridescence and improves color purity without the need for either refractive index matching or the inclusion of a broadband absorber.

摘要

具有与角度无关的结构色的光子材料非常理想,因为它们提供了作为油漆、化妆品、纺织品或显示器中的着色剂所需的宽视角。然而,它们的制造具有挑战性,因为它们需要具有短程相关性的各向同性纳米级结构。在这里,具有这种结构的多孔微粒由两亲性瓶刷嵌段共聚物通过单一的、可扩展的步骤制备而成。这是通过利用水包油乳液滴中的一种新型“可控胶束化”自组装机制实现的。通过限制水通过液滴界面的渗透,可以精确控制孔的大小,从而得到具有结构色的颜料。此外,通过改变初始乳化条件,仅使用一种聚合物(M = 290 kDa)就可以将反射颜色调整为在整个可见光谱范围内反射。这种“光子颜料”与其晶体类似物相比具有几个关键优势,因为它们提供各向同性的结构色,可抑制虹彩并提高颜色纯度,而无需折射率匹配或包含宽带吸收剂。

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