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Metal oxides and novel metallates coated stable engineered steel for corrosion resistance applications

机译:金属氧化物和新型金属盐涂层的稳定工程钢,用于耐腐蚀应用

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Functional materials in the family of ternary metal oxides and metallates have seen surging interest in recent times due to their diverse applications. In this study, we report first-principle calculations and experimental characterization results for a variety of newly mixed metal tungstates and other oxides, which have the potential for corrosion protection of steel in extreme environments. These new mixed oxides/tungstate family have the chemical stoichiometry Fe0.375X0.4375O0.1575, WX0.33O2.66 and FeWX0.5O3.5 (Where Ni, Mo, B), exhibit high electrostatic binding forces resulting in high stabilities as revealed from DFT calculations. Different parameters like entropy, enthalpy, electrostatic forces, and solid solution formability were calculated from first principle calculations for the different stoichiometries, based on which the most stable structure and composition was predicted. By appropriate tuning of chemical composition, such novel mixed metal oxides and metallates were synthesized through a unique solution-based route and further coated on steels. After phase and morphological examination of these coatings, they were subjected to harsh extreme environments, and their corrosion resistive behavior was studied through polarization tests and electrochemical impedance spectroscopy (EIS). The corrosion resistance of many of these coated substrates was observed to be robust with high coating capacitance, and corrosion resistance was found to be highest in the case of boron mixed tungstate oxide, which is also consistent with first principle calculations that reveal high stability. Incorporation of these stable ternary mixed metal oxides/metallates (tungstates) can have great potential for preservation and the protection of steel in harsh environments.
机译:三元金属氧化物和金属酸盐家族中的功能材料由于其多样化的应用,近年来受到了极大的关注。在这项研究中,我们报告了各种新混合的金属钨酸盐和其他氧化物的第一性原理计算和实验表征结果,这些氧化物可能在极端环境下为钢提供腐蚀防护。这些新的混合氧化物/钨酸盐族具有化学计量比Fe0.375X0.4375O0.1575,WX0.33O2.66和FeWX0.5O3.5(其中Ni,Mo,B),具有高静电结合力,因此具有很高的稳定性,如表1所示。根据DFT计算。根据不同化学计量的第一性原理计算,可以计算出不同的参数,例如熵,焓,静电力和固溶体可成型性,并据此预测最稳定的结构和组成。通过适当调整化学成分,可以通过独特的基于溶液的途径合成这种新型的混合金属氧化物和金属化物,并进一步涂覆在钢上。在对这些涂层进行了相和形态检查之后,它们经受了恶劣的极端环境,并且通过极化测试和电化学阻抗谱(EIS)研究了它们的耐腐蚀性能。观察到许多这些涂覆基材的耐腐蚀性在高涂覆电容下均很坚固,并且发现在混合硼酸钨酸盐的情况下耐腐蚀性最高,这也与揭示高稳定性的第一原理计算一致。掺入这些稳定的三元混合金属氧化物/金属酸盐(钨酸盐)可以在恶劣的环境中对钢进行防腐和保护。

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