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Effect of Temperature, Electrode Potential, and Bulk Composition on Hydrogen Electrosorption into Palladium-Ruthenium Alloys-Comparative Study with Other Binary Systems

机译:温度,电极电位和块状组合物对氢黑电吸收的影响与其他二元体系的钯 - 钌合金对比研究

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The influence of temperature between 283 K and 328 K on hydrogen electrosorption into Pd-Ru alloys in the bulk composition range 87-100% at. Pd was studied voltammetrically and chronoamperometrically in 0.5 M H2SO4 solution. The maximum alloy ability to absorb hydrogen decreases with increasing temperature. The extent of hydrogen absorption/desorption hysteresis is slightly reduced with increasing temperature and markedly reduced with increasing Ru bulk content. Both increasing temperature and Ru bulk content results not only in a decrease in the thermodynamic stability of the hydride phase but also in an improvement in the kinetics of hydrogen electrosorption. Pd-Ru alloys containing more than ca. 97% at. Pd absorb more hydrogen than pure Pd, while further Ru additive results in a significant deterioration of the alloy ability to absorb hydrogen. The data on the influence of temperature and alloy bulk composition on the processes of hydrogen electrosorption in Pd binary alloys with Ru, Rh, Pt, and Au have been compared.
机译:将283 k和328k的温度在散装组合物中对Pd-ru合金的氢吸收的影响范围为87-100%。 PD在0.5M H 2 SO 4溶液中伏扩枝率和计数计数。吸收氢的最大合金能力随着温度的增加而降低。随着温度的增加,随着ru批量含量的增加,氢吸收/解吸滞后的程度略微降低。增加温度和ru批量含量不仅导致氢化物相的热力学稳定性的降低,而且在氢黑电吸收的动力学的改善方面也不仅降低。 PD-ru含有超过CA的合金。 97%。 PD吸收比纯PD更多的氢,而另外的Ru添加剂导致合金能力的显着恶化吸收氢。 [ru,Rh,Pt和Au)对有关温度和合金批量组合物对Pd二元合金氢吸收过程的影响。

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