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Ni/cerium Molybdenum Oxide Hydrate Microflakes Composite Coatings Electrodeposited from Choline Chloride: Ethylene Glycol Deep Eutectic Solvent

机译:氯化胆碱:镍乙二醇深共熔溶剂电沉积的镍/铈氧化钼水合物微薄片复合涂层

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摘要

Cerium molybdenum oxide hydrate microflakes are codeposited with nickel from a deep eutectic solvent-based bath. During seven days of exposure in 0.05 M NaCl solution, the corrosion resistance of composite coating (Ni/CeMoOxide) is slightly reduced, due to the existence of some microcracks caused by large microflakes. Multielemental analysis of the solution, in which coatings are exposed and the qualitative changes in the surface chemistry (XPS) show selective etching molybdenum from microflakes. The amount of various molybdenum species within the surface of coating nearly completely disappear, due to the corrosion process. Significant amounts of Ce compounds are removed, however the corrosion process is less selective towards the cerium, and the overall cerium chemistry remains unchanged. Initially, blank Ni coatings are covered by NiO and Ni(OH) in an atomic ratio of 1:2. After exposure, the amount of Ni(OH) increases in relation to NiO (ratio 1:3). For the composite coating, the atomic ratios of both forms of nickel vary from 1:0.8 to 1:1.3. Despite achieving lower corrosion resistance of the composite coating, the applied concept of using micro-flakes, whose skeleton is a system of Ce(III) species and active form are molybdate ions, may be interesting for applications in materials with potential self-healing properties.
机译:氧化铈钼氧化物水合物微片与镍以共晶溶剂为基础的镀液共沉积。在0.05 M NaCl溶液中暴露7天期间,由于存在一些由大的微薄片引起的微裂纹,复合涂层(Ni / CeMoOxide)的耐腐蚀性会略有降低。对溶液进行的多元素分析(其中涂层被暴露并且表面化学性质(XPS)发生了质变)显示了从微米薄片中选择性腐蚀钼。由于腐蚀过程,涂层表面内各种钼的含量几乎完全消失。除去了大量的Ce化合物,但是腐蚀过程对铈的选择性较低,并且整个铈化学性质保持不变。最初,空白的Ni涂层被原子比为1:2的NiO和Ni(OH)覆盖。暴露后,Ni(OH)的量相对于NiO有所增加(比率1:3)。对于复合涂层,两种形式的镍的原子比在1:0.8至1:1.3之间变化。尽管降低了复合涂层的耐蚀性,但使用微薄片的应用概念可能对具有潜在自修复特性的材料的应用很有趣,该薄片的骨架是Ce(III)物种的系统,活性形式是钼酸盐离子。 。

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