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Ruthenium Incorporated Cobalt Phosphide Nanocubes Derived From a Prussian Blue Analog for Enhanced Hydrogen Evolution

机译:从普鲁士蓝类似物衍生而来的钌结合的磷化钴纳米立方体用于增强氢气的释放

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摘要

Electrochemical water splitting in alkaline media plays an important role in mass production of hydrogen. Ruthenium (Ru), as the cheapest member of platinum-group metals, has attracted much attention, and the incorporation of trace amount of Ru with cobalt phosphide could significantly improve the hydrogen evolution reaction (HER) catalytic activity. In this work, ruthenium-incorporated cobalt phosphide nanocubes are synthesized via a reaction between Co–Co Prussian blue analog (Co-PBA) and ruthenium chloride (RuCl3) followed by the phosphidation. The sample with a Ru content of ~2.04 wt.% exhibits the best HER catalytic activity with a low overpotential of 51 and 155 mV, to achieve the current densities of −10 and −100 mA cm−2, respectively, and the Tafel slope of 53.8 mV dec−1, which is comparable to the commercial Pt/C. This study provides a new perspective to the design and construction of high performance electrocatalysts for HER and other catalytic applications in a relatively low price.
机译:碱性介质中的电化学水分解在氢气的大量生产中起着重要作用。作为铂族金属中最便宜的成员,钌(Ru)已引起广泛关注,并且痕量Ru与磷化钴的结合可以显着提高氢释放反应(HER)的催化活性。在这项工作中,掺入钌的磷化钴纳米粒子是通过Co-Co普鲁士蓝类似物(Co-PBA)与氯化钌(RuCl3)之间的反应合成,然后进行磷酸化。 Ru含量约为2.04 wt。%的样品表现出最佳的HER催化活性,低电势为51和155 mV,可实现-10和-100 mA cm -2 的电流密度Tafel斜率分别为53.8 mV dec -1 ,可与商用Pt / C媲美。这项研究以较低的价格为用于HER和其他催化应用的高性能电催化剂的设计和构建提供了新的视角。

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