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First-principles design of highly-efficient earth-abundant electrocatalysts for hydrogen evolution reaction: TiF_3 and its analogs

机译:TiF_3及其类似物用于氢释放反应的高效富地球电催化剂的第一性原理设计

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Hydrogen evolution reaction (HER) plays an important role in water splitting to produce hydrogen. The high price of precious platinum-based catalysts that are the best HER electrocatalysts by now hampers the commercial application. Low-cost, earth-abundant and highly-efficient HER electrocatalysts are thus long-desired. On the basis of first-principles calculations, we investigated the HER electrocatalytic performance of the non-precious TiF3 and its analogs. Our calculations showed that TiF3 and WO3 can serve as efficient HER electrocatalysts with the overpotentials comparable to those of the platinum-based catalysts. To uncover the origins of electrocatalytic performance, we established a relationship between the surface adsorption ability of a material and its electronic structure. The low HER overpotentials, unique porous structure and high abundance in earth make these materials promising candidates for high-performance HER electrocatalysts.
机译:氢气析出反应(HER)在水分解产生氢气中起重要作用。如今,作为最好的HER电催化剂的贵重铂基催化剂的高昂价格阻碍了其商业应用。因此,长期以来需要低成本,富含地球和高效的HER电催化剂。在第一性原理计算的基础上,我们研究了非贵金属TiF3及其类似物的HER电催化性能。我们的计算表明,TiF3和WO3可以用作高效HER电催化剂,其超电势可与铂基催化剂相比。为了揭示电催化性能的起源,我们建立了材料的表面吸附能力与其电子结构之间的关系。低HER超电势,独特的多孔结构和地球上的高丰度使这些材料成为高性能HER电催化剂的有希望的候选者。

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