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The mechanism and activity of oxygen reduction reaction on single atom doped graphene: a DFT method

机译:DFT法在单原子掺杂石墨烯上进行氧还原反应的机理和活性

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Heteroatom doped graphene as a single-atom catalyst for oxygen reduction reaction (ORR) has received extensive attention in recent years. In this paper, the ORR activity of defective graphene anchoring single heteroatom (IIIA, IVA, VA, VIA and VIIA) was systematically investigated using a dispersion-corrected density functional theory method. For all of the 34 catalysts, 14 of which were further analyzed, and the Gibbs free energy of each elementary reaction was calculated. According to the scaling relationship between Δ G _(OOH*) and Δ G _(OH*) , we further analyzed the rate-determining step of the remaining 20 catalysts. The results show that when the ORR reaction proceeds in the path O _(2) → OOH → O → OH → H _(2) O, the reaction energy barriers are lower than 0.8 eV for Te-SV, Sb-DV, Pb-SV, Pb-DV, As-SV, As-DV, B-SV, Sn-SV and N-SV. Our result provides a theoretical basis for further exploration of carbon-based single-atom catalysts for ORR.
机译:近年来,杂原子掺杂的石墨烯作为用于氧还原反应(ORR)的单原子催化剂受到了广泛的关注。本文使用色散校正密度泛函理论方法系统地研究了缺陷石墨烯锚定单个杂原子(IIIA,IVA,VA,VIA和VIIA)的ORR活性。对于所有34种催化剂,将进一步分析其中的14种,并计算出每个基本反应的吉布斯自由能。根据ΔG _(OOH *)与ΔG _(OH *)的比例关系,我们进一步分析了其余20种催化剂的速率确定步骤。结果表明,当ORR反应在O_(2)→OOH→O→OH→H_(2)O的路径上进行时,Te-SV,Sb-DV,Pb的反应能垒低于0.8eV。 -SV,Pb-DV,As-SV,As-DV,B-SV,Sn-SV和N-SV。我们的结果为进一步探索碳基单原子催化剂用于ORR提供了理论基础。

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