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Recent Progress in High Entropy Alloys for Electrocatalysts

机译:高熵合金在电催化剂中的应用研究进展

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Abstract High entropy alloys (HEAs), which can incorporate five or more constituents into a single phase stably, have received considerable attention in recent years. The composition/structure complexity and adjustability endow them with a huge design space to adjust electronic structure, geometric configuration as well as catalytic activity through constructing reaction active sites with optimal binding energies of different reaction intermediates. This paper reviews the recent progress on the preparation methods, characterization techniques, electrocatalytic applications and functional mechanisms of HEAs-based electrocatalysts for hydrogen evolution, oxygen evolution and oxygen reduction reactions. The synthesis approaches for HEAs from bottom-up (high-energy ball milling, cryo-milling, melt-spinning and dealloying) to top-down strategies (carbothermal shock, sputtering deposition and solvothermal) and the corresponding materials characterizations are discussed and analyzed. By summarizing and analyzing the electrocatalytic performance of HEAs for diverse electrocatalytic reactions in water electrolysis cells, metal-air batteries and fuel cells, the basic principle of their designs and the relevant mechanisms are discussed. The technical challenges and prospects of HEAs-based electrocatalysts are also summarized with the proposed further research directions. This review can provide a beneficial theoretical reserve and experimental guidance for developing high performance electrocatalytic materials via the paradigm of high entropy.Graphical Abstract
机译:抽象高熵合金(头脑)把五个或更多的选民单相稳定,已收到相当大近年来关注。组成、结构复杂性和适应性赋予它们与一个巨大的设计空间调整电子结构,几何配置以及催化活性通过构建反应活跃网站最优的结合能不同的反应中间体。制备方法的进展,表征技术,electrocatalytic应用程序和功能的机制HEAs-based electrocatalysts为氢进化,进化和氧的减少反应。自底向上(高能球磨,cryo-milling,熔融纺丝和脱合金)自顶向下的策略(碳热还原的冲击,溅射沉积和solvothermal)相应的材料特征讨论和分析。electrocatalytic性能的分析他叫多样化electrocatalytic反应水电解细胞,金属气质和电池燃料电池,他们的设计的基本原则及相关机制进行了讨论。HEAs-based的技术挑战和前景electrocatalysts也与总结提出了进一步的研究方向。可以提供一个有益的理论储备和实验指导发展中国家高通过性能electrocatalytic材料范式的熵。

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