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Single Metal Atoms Anchored in Two-Dimensional Materials: Bifunctional Catalysts for Fuel Cell Applications

机译:以二维材料固定单金属原子:用于燃料电池应用的双官能催化剂

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摘要

Single metal atoms doped in two-dimensional materials have attracted particular attention for various catalytic reactions, due to their unique properties beyond metal catalysts. Herein we present density functional theory (DFT) calculations to study a wide range of such systems for oxygen reduction reaction (ORR) and hydrogen oxidation reaction (HOR) for application in cathode and anode of fuel cell, respectively. We find that the scaling relation of adsorption free energies of relevant ORR intermediates changes in the direction of improved activity. By considering more than 50 combinations, various ORR and HOR candidates are identified with improved catalytic activities compared to the state-of-the-art Pt (111). Particularly, Rh embedded in N-doped graphene is predicted to be markedly active for bifunctional fuel cell catalysis. This work highlights the potential of these systems as new classes of electrocatalysts to maximize the ORR catalytic activity and alleviate the use of precious metals
机译:由于其在金属催化剂之外的独特性能,单尺寸材料以二维材料掺杂的单一金属原子引起了各种催化反应的特别关注。在此,我们存在密度泛函理论(DFT)计算,以研究用于氧还原反应(ORR)和氢氧化反应(HOR)的各种这种系统,分别用于燃料电池的阴极和阳极中的应用。我们发现相关ORR中间体的吸附自由能量的扩展关系在改善活动方向上变化。通过考虑超过50种组合,与最先进的Pt(111)相比,通过改善的催化活性鉴定各种ORR和HOR候选物。特别地,预计嵌入N掺杂石墨烯中的RH对于双官能燃料电池催化是显着的活性的。这项工作突出了这些系统作为新类电催化剂的潜力,以最大化ORR催化活性并减轻贵金属的使用

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