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首页> 外文期刊>Journal of Applied Electrochemistry >Metastability and electrocatalytic activity of ruthenium dioxide cathodes used in water electrolysis cells
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Metastability and electrocatalytic activity of ruthenium dioxide cathodes used in water electrolysis cells

机译:水电解槽中二氧化钌阴极的亚稳定性和电催化活性

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摘要

Ruthenium dioxide-coated titanium electrodes when used as cathodes in water electrolysis cells are metastable systems which display high catalytic activity and unexpected stability. At the potentials involved the oxide films clearly should undergo reduction; the barrier to the latter process seems to arise due to hydroxylation of the outer layers of the thermally prepared oxide; the reduction of hydrous oxide films in general is inhibited by the intervention (as the primary reduction product) of a high energy state of the metal. The catalysis of the hydrogen gas evolution reaction at the oxide/solution interface is attributed to the involvement of a metastable cyclic redox mediator system involving multivalent Ru(OH) x surface species.
机译:当在水电解池中用作阴极时,涂有二氧化钌的钛电极是亚稳体系,具有高催化活性和出乎意料的稳定性。在所涉及的电位下,氧化膜显然应该还原;后一过程的障碍似乎是由于热制备的氧化物的外层的羟基化而产生的。通常,由于高能态金属的介入(作为主要的还原产物)而抑制了水合氧化膜的还原。在氧化物/溶液界面的氢气逸出反应的催化作用归因于涉及多价Ru(OH)x 表面物质的亚稳态环状氧化还原介体系统的参与。

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