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Reaction kinetics and X-ray absorption spectroscopy studies of yttrium containing metal hydride electrodes

机译:含金金属氢化物电极钇的反应动力学和X射线吸收光谱研究

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This was a study of electrode degradation mechanisms and the reaction kinetics of LaNi{sub}4.7Sn{sub}0.3, La{sub}(1-xY{sub}xNi{sub}4.7Sn{sub}0.3 (x = 0.1, 0.2, and 0.3) and La{sub}0.7Y{sub}0.3Ni{sub}4.6Sn{sub}0.3Co{sub}0.1 metal hydrideelectrodes. Alloy characterization included x-ray diffraction (XRD), x-ray absorption (XAS), hydrogen absorption in a Sieverts apparatus, and electrochemical cycling of alloy electrodes. The atomic volume of H was determined for two of the alloys.Electrochemical kinetic measurements were made using steady state galvanostatic measurements, galvanodynamic sweep, and electrochemical impedance techniques. XAS was used to examine the degree of corrosion of the alloys with cycling. Alloying with Ydecreased the corrosion rate. The results are consistent with corrosion inhibition by a Y containing passive film. The increase in the kinetics of the hydrogen oxidation reaction (HOR) with increasing depth of discharge was much greater on the Ycontaining alloys. This may be due to the dehydriding of the catalytic species on the surface of the metal hydride particles.
机译:这是的电极劣化机制的研究,并的LaNi {子} 4.7Sn {子} 0.3,拉{子}(1-XY {子} XNI {子} 4.7Sn {子} 0.3(X = 0.1的反应动力学, 0.2和0.3)和La {子} 0.7Y {子} 0.3Ni {子} 4.6Sn {子} 0.3Co {子} 0.1金属hydrideelectrodes。合金表征包括X射线衍射(XRD),X-射线吸收( XAS),在若干希沃特设备氢的吸收,和合金电极的电化学循环。H的原子体积为两个alloys.Electrochemical动力学测量的使用稳态恒电流测量,动电流扫描,和电化学阻抗技术作了测定。XAS用于检查合金的腐蚀程度用骑自行车。合金化与Ydecreased腐蚀速度,结果是与由含有钝化膜一个ý腐蚀抑制相一致。在氢的氧化反应(HOR)的随动力学的增加放电深度是在Ycontaining合金大得多。这可能是由于在金属氢化物颗粒的表面上的催化物质的脱氢。

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