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Characterization Of Water Exposed Plasma Sprayed Oxide Coating Materials Using Xps

机译:使用Xps表征暴露于水的等离子喷涂氧化物涂层材料

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The surface compositions and oxidation states of non-exposed and water exposed plasma sprayed oxide coatings were studied using X-ray photoelectron spectroscopy (XPS). Coating materials were TiO_2, Al_2O_3 and Cr_2O_3 and their mixtures. Water exposures were performed for free standing coating disks at mild electrolyte (1 mmol NaCl solution) at pH 4, 7 and 9. The exposure time was two weeks.rnIt was observed that pure plasma sprayed TiO_2 material was chemically stable over whole experiment pH range and only slight surface hydroxylation was observed for this material.rnIn case of plasma sprayed Al_2O_3 materials the surface O/Al ratio increased considerably during water exposure especially at exposure pH 7. This was probably result of surface conversion to hydrous form. No surface oxidation state changes were observed for this material.rnThe non-exposed Cr_2O_3 materials contained both Cr(III) and Cr(VI) oxides. The water exposures increased the surface oxygen and Cr(VI) contents at the expense of Cr(III). The most probable reason for that was the dissolution of surface Cr(VI) oxide phase during water exposures and the (re)adsorption of dissolved Cr(VI) species back to the surface.
机译:使用X射线光电子能谱(XPS)研究了未暴露和暴露于水的等离子体喷涂氧化物涂层的表面组成和氧化态。涂层材料为TiO_2,Al_2O_3和Cr_2O_3及其混合物。在pH为4、7和9的中性电解质(1 mmol NaCl溶液)下,对独立式涂膜盘进行水暴露。暴露时间为两周。rn观察到纯等离子喷涂的TiO_2材料在整个实验pH范围内化学稳定在等离子喷涂的Al_2O_3材料的情况下,特别是在暴露pH值为7的水暴露期间,表面O / Al比会显着增加。这可能是表面转化为含水形式的结果。该材料未观察到表面氧化态变化。rn。未暴露的Cr_2O_3材料同时包含Cr(III)和Cr(VI)氧化物。水暴露增加了表面氧和Cr(VI)的含量,但以Cr(III)为代价。其最可能的原因是在水暴露期间表面Cr(VI)氧化物相的溶解以及溶解的Cr(VI)物质重新吸附到表面上。

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