Co-Assembly of Colloids and Eumelanin Nanoparticles in Droplets for Structural Pigments with High Saturation

IF 13 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Small Pub Date : 2021-12-03 DOI:10.1002/smll.202106048
Sang Hoon Han, Ye Hun Choi, Shin-Hyun Kim
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引用次数: 11

Abstract

Colloidal crystals have been used to develop structural colors. However, incoherent scattering causes the colors to turn whitish, reducing the color saturation. To overcome the problem, light-absorbing additives have been incorporated. Although various additives have been used, most of them are not compatible with a direct co-assembly with common colloids in aqueous suspensions. Here, the authors suggest eumelanin nanoparticles as a new additive to enhance the color chroma. Eumelanin nanoparticles are synthesized to have diameters of several nanometers by oxidative polymerization of precursors in basic solutions. The nanoparticles carry negative charges and do not weaken the electrostatic repulsion among same-charged polystyrene particles when they are added to aqueous suspensions. To prove the effectiveness of eumelanin as a saturation enhancer, the authors produce photonic balls through direct co-assembly of polystyrene and eumelanin using water-in-oil emulsion droplets, while varying the weight ratio of eumelanin to polystyrene. The high crystallinity of colloidal crystals is preserved for the ratio up to at least 1/50 as the eumelanin does not perturb the crystallization. The eumelanin effectively suppresses incoherent scattering while maintaining the strength of structural resonance at an optimum ratio, improving color chroma without compromising brightness.

胶体和真黑素纳米颗粒在高饱和度结构颜料液滴中的共组装
胶体晶体已被用来发展结构色。然而,非相干散射导致颜色变白,降低了色彩饱和度。为了克服这个问题,已经加入了吸收光的添加剂。虽然使用了各种添加剂,但它们中的大多数都不能与水悬浮液中的普通胶体直接共组装。在此,作者建议真黑色素纳米颗粒作为一种新的添加剂来提高颜色的色度。真黑素纳米颗粒是通过在碱性溶液中对前体进行氧化聚合而合成的,其直径可达几纳米。纳米颗粒携带负电荷,当它们被加入到水悬浮液中时,不会减弱相同电荷的聚苯乙烯颗粒之间的静电排斥。为了证明真黑素作为饱和增强剂的有效性,作者在改变真黑素与聚苯乙烯的重量比的情况下,利用油包水乳液滴将聚苯乙烯与真黑素直接共组装,制备了光子球。胶体晶体的高结晶度被保留到至少1/50的比例,因为真黑素不干扰结晶。真黑素有效地抑制非相干散射,同时将结构共振强度保持在最佳比例,在不影响亮度的情况下提高色度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Small
Small 工程技术-材料科学:综合
CiteScore
17.70
自引率
3.80%
发文量
1830
审稿时长
2.1 months
期刊介绍: Small serves as an exceptional platform for both experimental and theoretical studies in fundamental and applied interdisciplinary research at the nano- and microscale. The journal offers a compelling mix of peer-reviewed Research Articles, Reviews, Perspectives, and Comments. With a remarkable 2022 Journal Impact Factor of 13.3 (Journal Citation Reports from Clarivate Analytics, 2023), Small remains among the top multidisciplinary journals, covering a wide range of topics at the interface of materials science, chemistry, physics, engineering, medicine, and biology. Small's readership includes biochemists, biologists, biomedical scientists, chemists, engineers, information technologists, materials scientists, physicists, and theoreticians alike.
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