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基于具有增强颜色稳定性和优异光催化活性的CB@SiO@TiO核-双壳纳米球的非彩虹色结构色颜料。

Non-iridescent Structurally Colored Pigments Based on CB@SiO@TiO Core-Bishell Nanospheres with Enhanced Color Stability and Excellent Photocatalytic Activity.

作者信息

Xu Bin, Hou Maohua, Xu Qinqin, Su Jieying, Zhang Haitao, Lu Xiaohui, Ni Zhongjin

机构信息

College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou 310014, China.

State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, China.

出版信息

ACS Appl Mater Interfaces. 2023 Dec 6;15(48):56138-56149. doi: 10.1021/acsami.3c11219. Epub 2023 Nov 20.

Abstract

In recent years, artificial amorphous photonic structure (APS) materials with high color saturation and angle independence have been competitively reported. However, there is a lack of research into their functionalization and application in practical environments. Here, with practical applications in mind, we prepared APS pigments based on CB@SiO@TiO core-bishell nanospheres and demonstrated high color saturation, enhanced color stability, and excellent photocatalytic activity. SiO effectively protected the carbon black particles from ablation during the calcination process. Paints composed of ethanol, ethyl cellulose (EC), and pigments could be spray-coated on any substrate to prepare a structurally colored coating without limitation. The coatings show good mechanical stability and photothermal stability. The color of the structurally colored pigments can be easily changed by adjusting the sizes of the CB@SiO@TiO nanospheres. The photocatalytic activity of the pigments on formaldehyde (HCHO) and methylene blue (MB) solution and reaction kinetics of their degradation were studied by experiment. The results showed that the photocatalytic activity of the pigments increased with the increase of the TiO loading, and the degradation rate of HCHO reached 96.7% for 3 h and that of MB reached 97.9% for 60 min when the TiO shell thickness was 40 nm. The structurally colored pigments based on CB@SiO@TiO nanospheres effectively solve the environmental problems caused by the application of pigments and have a promising future in the fields of color decoration, display, and painting.

摘要

近年来,具有高色彩饱和度和角度独立性的人工非晶态光子结构(APS)材料被相继报道。然而,对于它们在实际环境中的功能化和应用缺乏研究。在此,考虑到实际应用,我们制备了基于CB@SiO@TiO核壳纳米球的APS颜料,并展示了其高色彩饱和度、增强的颜色稳定性和优异的光催化活性。SiO有效地保护了炭黑颗粒在煅烧过程中不被烧蚀。由乙醇、乙基纤维素(EC)和颜料组成的涂料可以喷涂在任何基材上,不受限制地制备结构色涂层。这些涂层表现出良好的机械稳定性和光热稳定性。通过调节CB@SiO@TiO纳米球的尺寸,可以轻松改变结构色颜料的颜色。通过实验研究了颜料对甲醛(HCHO)和亚甲基蓝(MB)溶液的光催化活性及其降解反应动力学。结果表明,颜料的光催化活性随着TiO负载量的增加而提高,当TiO壳层厚度为40 nm时,HCHO在3 h内的降解率达到96.7%,MB在60 min内的降解率达到97.9%。基于CB@SiO@TiO纳米球的结构色颜料有效地解决了颜料应用所带来的环境问题,在色彩装饰、显示和涂装领域具有广阔的前景。

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