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Engineering Ruthenium-Based Electrocatalysts for Effective Hydrogen Evolution Reaction

机译:工程钌基电催化剂,用于有效氢化反应

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The investigation of highly effective, durable, and cost-effective electrocatalysts for the hydrogen evolution reaction (HER) is a prerequisite for the upcoming hydrogen energy society. To establish a new hydrogen energy system and gradually replace the traditional fossil-based energy, electrochemical water-splitting is considered the most promising, environmentally friendly, and efficient way to produce pure hydrogen. Compared with the commonly used platinum (Pt)-based catalysts, ruthenium (Ru) is expected to be a good alternative because of its similar hydrogen bonding energy, lower water decomposition barrier, and considerably lower price. Analyzing and revealing the HER mechanisms, as well as identifying a rational design of Ru-based HER catalysts with desirable activity and stability is indispensable. In this review, the research progress on HER electrocatalysts and the relevant describing parameters for HER performance are briefly introduced. Moreover, four major strategies to improve the performance of Ru-based electrocatalysts, including electronic effect modulation, support engineering, structure design, and maximum utilization (single atom) are discussed. Finally, the challenges, solutions and prospects are highlighted to prompt the practical applications of Ru-based electrocatalysts for HER.
机译:对高效,耐用性和具有成本效益的氢气进化反应(她)的耐高效性和经济高效的电催化剂是即将到来的氢能社会的先决条件。为了建立新的氢能系统并逐渐取代传统的化石能量,电化学水分裂被认为是产生纯氢的最有前景,环保和有效的方法。与常用的铂(Pt)的催化剂相比,预期钌(Ru)是一种良好的替代方案,因为其类似的氢键能量,降低水分分解屏障,以及相当低的价格。分析和揭示她的机制,以及鉴定具有所需活性和稳定性的基于Ru的催化剂的合理设计是必不可少的。在本次审查中,简要介绍了她的电催化剂和相关描述参数的研究进展。此外,讨论了四种主要策略,提高了ru基电催化剂的性能,包括电子效果调制,支持工程,结构设计以及最大利用(单个原子)。最后,突出了挑战,解决方案和前景,以促使Ru的电催化剂为她的实际应用。

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