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由硅氧烷乳化聚合诱导的分级杂化粒子赋予聚氨酯复合涂层超疏水性、隔热性和荧光性。

Polymerization-Induced Hierarchical Hybrid Particles from Siloxane Emulsification Endowing Polyurethane Composite Coating with Superhydrophobicity, Thermal Insulation, and Fluorescence.

作者信息

Zhou Chen, Han Kai, Wang Jianlong, Zhao Nana, Qiao Shuqi, Wu Yi, Yuan Jinfeng, Pan Zhicheng, Yang Yongfang, Pan Mingwang

机构信息

Department of Polymer Materials and Engineering, School of Chemical Engineering and Technology, Hebei University of Technology, Tianjin 300401, P. R. China.

Hebei Key Laboratory of Functional Polymers, Hebei University of Technology, Tianjin 300401, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Jun 26;16(25):32503-32515. doi: 10.1021/acsami.4c04224. Epub 2024 Jun 14.

Abstract

Hierarchically structural particles (HSPs) are highly regarded as favorable nanomaterials for superhydrophobic coating due to their special multiscale structure and surface physicochemical properties. However, most of the superhydrophobic coatings constructed from HSPs are monofunctional, constraining their broader applications. Moreover, traditional methods for constructing HSPs mostly rely on complicated chemical routes and template removal. Herein, we propose an innovative strategy (one-pot method) for producing multifunctional hierarchical hybrid particles (HHPs). Polysilsesquioxane (PSQ), generated from hydrolysis condensation of methyltriethoxylsilane, is used as the sole stabilizer to anchor on the surface of styrene and short fluoroalkyl compound tridecafluorooctyl acrylate comonomers droplets, forming a mesoporous PSQ shell. Subsequently, the comonomers inside of the shell perform restricted polymerization to generate the HHP due to the driving of the mesoporous capillary force. The HHP is then mixed with waterborne polyurethane (WPU) to develop a robust nanocomposite coating (WPU-HHP). Through the deliberate design of the HHP components, the WPU-HHP coating has thermal insulation, photoluminescence properties, and the ability to achieve a wettability transition during abrasion. Our research has achieved the integration of multifunctionality in one waterborne hybrid system, broadening the application areas of nanocomposite coatings.

摘要

分级结构粒子(HSPs)因其特殊的多尺度结构和表面物理化学性质,被高度视为用于超疏水涂层的理想纳米材料。然而,大多数由HSPs构建的超疏水涂层是单功能的,限制了它们更广泛的应用。此外,传统的构建HSPs的方法大多依赖复杂的化学路线和模板去除。在此,我们提出了一种创新策略(一锅法)来制备多功能分级混合粒子(HHPs)。由甲基三乙氧基硅烷水解缩合生成的聚倍半硅氧烷(PSQ)用作唯一的稳定剂,锚定在苯乙烯和短氟烷基化合物丙烯酸十三氟辛酯共聚单体液滴表面,形成介孔PSQ壳。随后,壳内的共聚单体在介孔毛细力的驱动下进行受限聚合以生成HHP。然后将HHP与水性聚氨酯(WPU)混合以开发一种坚固的纳米复合涂层(WPU-HHP)。通过对HHP组分的精心设计,WPU-HHP涂层具有隔热、光致发光性能以及在磨损过程中实现润湿性转变的能力。我们的研究在一个水性混合体系中实现了多功能的集成,拓宽了纳米复合涂层的应用领域。

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