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首页> 外文期刊>Frontiers in Chemistry >Size, Composition, and Support-Doping Effects on Oxygen Reduction Activity of Platinum-Alloy and on non-Platinum Metal-Decorated-Graphene Nanocatalysts
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Size, Composition, and Support-Doping Effects on Oxygen Reduction Activity of Platinum-Alloy and on non-Platinum Metal-Decorated-Graphene Nanocatalysts

机译:尺寸,组成和载体掺杂对铂合金和非铂金属修饰的石墨烯纳米催化剂的氧还原活性的影响

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ABSTRACT Recent investigations reported in the open literature concerning the functionalization of graphene as a support material for transition metal nanoparticle catalysts have examined isolated systems for their potential Oxygen Reduction Reaction (ORR) activity. In this work we present results which characterize the ability to use functionalized graphene (via dopants B, N) to upshift and downshift the adsorption energy of mono-atomic oxygen, O*, (the ORR activity descriptor on ORR Volcano Plots) for various compositions of 4-atom, 7- atom, and 19-atom sub-nanometer binary alloy/intermetallic transition metal nanoparticle catalysts on graphene (TMNP-MDG). Our results show several important and interesting features: 1) that the combination of geometric and electronic effects makes development of simple linear mixing rules for size/composition difficu 2) that the transition from 4- to 7- to 19-atom TMNP on MDG has pronounced effects on ORR activity for all compositions; 3) that the use of B and N as dopants to modulate the graphene-TMNP electronic structure interaction can cause shifts in the oxygen adsorption energy of 0.5 eV or more; 4) that it might be possible to make specific doped- graphene-NixCuy TMNP systems which fall close to the Volcano Peak for ORR. Our results point to systems which should be investigated experimentally and may improve the viability of future fuel cell or other ORR applications, and provide new paths for future investigations of more detail for TMNP-MDG screening.
机译:摘要在公开文献中报道的有关石墨烯作为过渡金属纳米粒子催化剂载体材料的功能化的最新研究已经检查了分离的系统的潜在氧还原反应(ORR)活性。在这项工作中,我们呈现的结果表征了使用官能化石墨烯(通过掺杂剂B,N)来上移和下移单原子氧O *(ORR火山图上的ORR活性描述符)的吸附能的能力。石墨烯上的4原子,7原子和19原子亚纳米二元合金/金属间过渡金属纳米粒子催化剂(TMNP-MDG)。我们的结果显示了几个重要且有趣的特征:1)几何效应和电子效应的结合使得难以为尺寸/成分开发简单的线性混合规则; 2)MDG上从4原子到7原子到19原子的TMNP过渡对所有组合物的ORR活性都有明显影响; 3)使用B和N作为掺杂剂来调节石墨烯-TMNP电子结构相互作用会导致0.5 eV或更高的氧吸附能移动; 4)可能会制作出特定的掺杂石墨烯-NixCuy TMNP系统,该系统接近ORR的火山峰。我们的研究结果指出了应该进行实验研究的系统,可以改善未来燃料电池或其他ORR应用的可行性,并为进一步研究TMNP-MDG筛选提供了新的途径。

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