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含纳米二氧化硅粒子和防腐丙烯酸单体的多功能复合涂层,兼具抗划伤和耐腐蚀性能。

Multi-functional hybrid coatings containing silica nanoparticles and anti-corrosive acrylate monomer for scratch and corrosion resistance.

机构信息

Advanced Materials Division, Korea Research Institute of Chemical Technology, Yuseong, Daejeon, Korea.

出版信息

Nanotechnology. 2011 Jan 14;22(2):025601. doi: 10.1088/0957-4484/22/2/025601. Epub 2010 Dec 7.

Abstract

Multi-functional hybrid coatings having both anti-corrosion and scratch resistance were prepared from modified silica nanoparticles and functional acrylates. To improve the dispersion properties of silica nanoparticles in the organic/inorganic hybrid coatings, the surface of the nanoparticles was modified with γ-methacryloxypropyltrimethoxysilane. The coating solution could be prepared by mixing modified silica nanoparticles, tetrasiloxane acrylate, di-acrylate monomer containing an anti-corrosion functional group, acrylic acid, and an initiator in a solvent. The mixture was then dip-coated on iron substrates and finally polymerized by ultraviolet (UV) irradiation. Corrosion and scratch resistance of the coated iron was evaluated by electrochemical impedance spectroscopy (EIS) and a pencil hardness test, respectively. From the EIS results, the coatings with tetrasiloxane acrylate and di-acrylate did not show any decrease in impedance or phase angle, even after 50 days' exposure to 0.1 M NaCl electrolyte, whereas the conventional acrylate coatings started to fail after only 24 h. A hybrid coating containing the amine-quinone functional group exhibited excellent corrosion protection properties with 4-5H pencil hardness.

摘要

多功能杂化涂层具有耐腐蚀和耐划伤性能,由改性二氧化硅纳米粒子和功能丙烯酸酯制备而成。为了提高纳米粒子在有机/无机杂化涂层中的分散性能,采用γ-甲基丙烯酰氧基丙基三甲氧基硅烷对纳米粒子进行表面改性。将改性后的二氧化硅纳米粒子、四硅氧烷丙烯酸酯、含耐腐蚀功能基团的二丙烯酸酯单体、丙烯酸和引发剂混合在溶剂中,即可制备出涂层溶液。然后将混合溶液浸涂在铁基体上,最后通过紫外(UV)辐照进行聚合。通过电化学阻抗谱(EIS)和铅笔硬度测试分别评估了涂层铁的耐腐蚀和耐划伤性能。从 EIS 结果来看,即使在 0.1 M NaCl 电解质中暴露 50 天后,含有四硅氧烷丙烯酸酯和二丙烯酸酯的涂层的阻抗或相角没有任何降低,而传统的丙烯酸酯涂层在仅 24 小时后就开始失效。含有胺-醌功能基团的杂化涂层具有优异的耐腐蚀保护性能,铅笔硬度为 4-5H。

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