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首页> 外文期刊>Journal of power sources >Extremely fast hydrogen absorption/desorption through platinum overlayers
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Extremely fast hydrogen absorption/desorption through platinum overlayers

机译:通过铂金覆盖层极快地吸收/解吸氢

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The hydrogen electrosorption in thin palladium films (50-1000 nm) was investigated at palladium electrodes covered with platinum overlayers. The results for this model system show that the rates of the hydrogen sorption/desorption are orders of magnitude higher for platinized samples with respect to pure palladium. The highest absorption kinetics have been observed for Pd electrodes fully covered with 1-3 platinum monolayers. By means of electrochemical impedance spectroscopy (EIS) we have shown that the process is diffusion limited at platinized Pd layers. Diffusion coefficient, D-H, determined in EIS, is two orders of magnitude higher than that previously reported for thin palladium films and approaches DH for bulk palladium. The system stability after hydrogen absorption was assessed and the sorption mechanism was discussed. Surprisingly high durability of the platinized palladium enables its use in a variety of applications where fast and selective response in the presence of hydrogen is required. (C) 2015 Elsevier B.V. All rights reserved.
机译:在覆盖有铂覆盖层的钯电极上研究了薄钯膜(50-1000 nm)中的氢电吸附。该模型系统的结果表明,相对于纯钯,镀铂样品的氢吸附/解吸速率要高几个数量级。对于完全覆盖1-3个铂单层的Pd电极,已观察到最高的吸收动力学。通过电化学阻抗谱(EIS),我们已经表明该过程在铂镀钯层上受到扩散限制。在EIS中确定的扩散系数D-H比先前报道的薄钯膜的扩散系数高两个数量级,而散装钯的扩散系数接近DH。评估了氢吸收后的系统稳定性,并讨论了吸附机理。惊人的是,铂钯的高耐用性使其可用于需要氢气存在下的快速选择性反应的各种应用中。 (C)2015 Elsevier B.V.保留所有权利。

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