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Electrodeposition of composite Fe-TiO2 coatings from methanesulfonate electrolyte

机译:甲烷磺酸盐电解质对Fe-TiO2复合涂层的电沉积

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摘要

The process of electrodeposition of an iron-titania composite electrochemical coating from methanesulfonate electrolyte is studied. TiO2 Degussa P 25 nanopowder (a mixture of crystalline modifications of rutile and anatase, with the latter prevailing) is used for preparation of suspension electrolyte. The dispersed phase content in the composition coating increases at a decrease in current density and increase in TiO2 in the suspension. It is shown that kinetics of codeposition is adequately described by the improved Guglielmi model. It is shown that inclusion of TiO2 particles into an iron matrix results in an increase in microhardness of the coating due to dispersion strengthening. Fe-TiO2 (anatase+rutile) coatings manifest photocatalytic activity with respect to the reaction of destruction of the methyl orange dye in aqueous solutions under exposure to UV radiation, and this activity is higher than in the case of similar coatings containing TiO2-rutile particles.
机译:研究了由甲磺酸盐电解质电沉积铁-二氧化钛复合电化学涂层的过程。 TiO 2 Degussa P 25纳米粉(金红石和锐钛矿的晶体变种的混合物,以后者为主要成分)用于制备悬浮电解质。组合物涂层中的分散相含量随着电流密度的降低而增加,并且悬浮液中的TiO2升高。结果表明,改进的Guglielmi模型可以充分描述共沉积动力学。已表明,由于分散增强,将TiO2颗粒包含在铁基质中会导致涂层的显微硬度增加。 Fe-TiO2(锐钛矿+金红石)涂层对暴露于紫外线辐射下的水溶液中的甲基橙染料的破坏反应具有光催化活性,并且该活性高于含有TiO2-金红石颗粒的类似涂层的情况。

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