疏水纳米微胶囊有效提高了涂料的防水性能

IF 0.9 4区 材料科学
Ke He, Yong Liu, Yanqi Wu, Yanting He, Qing Hu, Jia Wu, Guangxun Cui, Jun Zhang, Jun Jin
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引用次数: 0

摘要

超疏水材料由于具有特殊的表面润湿性、自洁性、减阻性、防冰性等性能,被广泛用作建筑材料、船舶表面的涂料或涂料添加剂,甚至用于液体运输、生物医药等领域,成为近年来涂料方向的研究热点之一。但疏水表面本身稳定性弱,耐久性差,影响了其应用价值。因此,本研究采用多相乳液法制备了PS纳米微胶囊,通过SEM电镜测得其粒径约为350-550 nm,分布较为均匀。研究了三甲氧基(1H, 1H, 2H, 2H-三氟辛基)硅烷(PFOTMS)在不同摩尔比下改性的PS纳米微胶囊的疏水性。SEM结果表明,改性后的PFOTMS-PS纳米微胶囊的表面粗糙度发生了变化。接触角证明PFOTMS含量越大,改性PFOTMS- ps纳米微胶囊的疏水性越好。当含量达到50%时,疏水性能最佳。PFOTMS-PS纳米微胶囊作为一种涂层,对衬底材料的性能没有特定的要求。需要注意的是,室温下30天后涂层的疏水性没有明显变化。上述结果表明,PFOTMS-PS纳米微胶囊具有良好的疏水性和稳定性,未来有望在防水纺织品、建筑涂料等领域得到广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrophobic Nano-Microcapsules Effectively Improve the Waterproof Performance of Coatings
Due to the special surface wettability, self-cleaning, drag reduction, anti-icing and other properties, superhydrophobic materials are widely used as coating or coating additive on the surface of building materials, ships, and even for liquid transportation, biomedicine, etc., which have become one of the research hotspots in the direction of coating in recent years. However, the hydrophobic surface itself has weak stability and poor durability, which affects its application value. Therefore, in this study, PS nano-microcapsule was prepared by the multiphase emulsion method, and their particle size was measured by SEM electron microscopy to be about 350–550 nm, with a relatively uniform distribution. The hydrophobicity of PS nano-microcapsule modified with trimethoxy (1H, 1H, 2H, 2H-trifluoroctyl) silane (PFOTMS) at different molar ratios was investigated. SEM results showed that the surface roughness of the modified PFOTMS-PS nano-microcapsule could be changed. The contact angle proved that the greater the content of PFOTMS, the better the hydrophobicity of the modified PFOTMS-PS nano-microcapsule. When the content reached 50%, the hydrophobic performance was the best. As a coating, PFOTMS-PS nano-microcapsule has no specific requirement for the properties of the substrate material. It should be noted that the hydrophobicity of the coating did not change significantly after 30 days at room temperature. The above results indicated that PFOTMS-PS nano-microcapsule had good hydrophobicity and stability, and is expected to be used in many fields such as waterproof textiles and architectural coatings in the future.
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来源期刊
Science of Advanced Materials
Science of Advanced Materials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
11.10%
发文量
98
审稿时长
4.4 months
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