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Ultralow Ru Loading Transition Metal Phosphides as High-Efficient Bifunctional Electrocatalyst for a Solar-to-Hydrogen Generation System

机译:UltraLow Ru将过渡金属磷酸作为太阳能发电系统的高效双官能电催化剂

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摘要

Abstract Water splitting is a promising technology for sustainable conversion of hydrogen energy. The rational design of oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) bifunctional electrocatalysts with superior activity and stability in the same electrolyte is the key to promoting their large‐scale applications. Herein, an ultralow Ru (1.08 wt%) transition metal phosphide on nickel foam (Ru–MnFeP/NF) derived from Prussian blue analogue, that effectively drivies both the OER and the HER in 1 m KOH, is reported. To reach 20 mA cm−2 for OER and 10 mA cm−2 for HER, the Ru–MnFeP/NF electrode only requires overpotentials of 191 and 35 mV, respectively. Such high electrocatalytic activity exceeds most transition metal phosphides for the OER and the HER, and even reaches Pt‐like HER electrocatalytic levels. Accordingly, it significantly accelerates full water splitting at 10 mA cm−2 with 1.470 V, which outperforms that of the integrated RuO2 and Pt/C couple electrode (1.560 V). In addition, the extremely long operational stability (50 h) and the successful demonstration of a solar‐to‐hydrogen generation system through full water splitting provide more flexibility for large‐scale applications of Ru–MnFeP/NF catalysts.
机译:摘要水分裂是一种有助于可持续转换氢能的有希望的技术。具有优异的活性和相同电解质中具有优异活性和稳定性的氧气进化反应(Oer)和氢气进化反应(她的)双官能电催化剂是促进其大规模应用的关键。在此,据报道,衍生自普鲁安蓝色类似物的镍泡沫(Ru-MNFep / NF)上的超级Ru(1.08wt%)过渡金属磷化物,其有效地驱动1M KOH中的oer和她。为oer和10 ma cm-2达到20 ma cm-2,Ru-mnfep / nf电极仅需要分别为191和35 mV的过电位。这种高电催化活性超过大多数过渡金属磷化磷酸酯,oer和她,甚至达到pt样的电催化水平。因此,它显着加速了10 mA CM-2的全水分,1.470 V,其优于集成的Ruo2和Pt / C耦合电极(1.560V)。此外,通过全水分分裂,极长的操作稳定性(50小时)和太阳能发电系统的成功演示为Ru-MnFep / NF催化剂的大规模应用提供了更大的灵活性。

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