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Effects of different surfactants on the silica content and characterization of Ni–SiO 2 nanocomposites

机译:不同表面活性剂对二氧化硅含量和Ni-SiO 2 纳米复合材料表征的影响

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This article presents a method for the electrochemical preparation of a coating of nickel–silica nanocomposites on a carbon steel substrate. The incorporation of hydrophilic silica particles into the Ni composite coating during co-electrodeposition is so difficult due to the small size and the hydrophilicity of SiO~(2)particle, generally less than 2 v% of silica is incorporated into the composite at different current densities, agitation speeds and silica concentrations. The effect of the presence of four surfactants, namely cocamidopropyl betaine (CAPB), decylglycoside (DG), cetyltrimethyl ammonium chloride (CTAC) and ammonium lauryl ether sulfate (ALES), on overcoming this problem was investigated in this research, and the surfactants were found to greatly influence the surface charge of silica, silica incorporation percentage and the microstructure of the composite. In fact, upon increasing the internal stresses, the products prepared in the presence of CAPB and DG were found to crack to some degree. CTAC was found to lead to entrapment mode silica co-deposition in the Ni coating. Furthermore, the addition of ALES into an electrolyte bath negatively supercharged silica surfaces and increased silica dispersion, which led to a dramatic increase in the silica incorporation percentages to around 14 v%. The results showed that Ni–SiO~(2)composites prepared in the presence of ALES had better corrosion resistance, hardness and wear properties. Graphical abstract.
机译:本文介绍了一种在碳钢基底上电化学制备镍-二氧化硅纳米复合材料涂层的方法。由于小尺寸和SiO〜(2)颗粒的亲水性,在共电沉积过程中将亲水性二氧化硅颗粒掺入Ni复合涂层非常困难,通常在不同电流下将少于2 v%的二氧化硅掺入复合物中密度,搅拌速度和二氧化硅浓度。在这项研究中,研究了存在四种表面活性剂,即椰油酰胺丙基甜菜碱(CAPB),癸基糖苷(DG),十六烷基三甲基氯化铵(CTAC)和月桂基醚硫酸铵(ALES)的效果,并且对这些表面活性剂进行了研究。被发现极大地影响了二氧化硅的表面电荷,二氧化硅的掺入百分比和复合材料的微观结构。实际上,当内应力增加时,发现在CAPB和DG存在下制备的产品会在一定程度上开裂。发现CTAC会在Ni涂层中导致捕获模态二氧化硅共沉积。此外,将ALES添加到电解质浴中使二氧化硅表面带负电荷,并增加了二氧化硅分散度,这导致二氧化硅掺入百分比急剧增加至约14v%。结果表明,在ALES存在下制备的Ni-SiO〜(2)复合材料具有较好的耐蚀性,硬度和耐磨性。图形概要。

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