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Untangling Cooperative Effects of Pyridinic and Graphitic Nitrogen Sites at Metal-Free N-Doped Carbon Electrocatalysts for the Oxygen Reduction Reaction

机译:无金属N掺杂碳电催化剂对氧还原反应的无吡啶和石墨氮位点的解除效应

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摘要

Metal-free carbon electrodes with well-defined composition and smooth topography are prepared via sputter deposition followed by thermal treatment with inert and reactive gases. X-ray photoelectron spectroscopy (XPS) and Raman spectroscopy show that three carbons of similar N/C content that differ in N-site composition are thus prepared: an electrode consisting of almost exclusively graphitic-N (N_G), an electrode with predominantly pyridinic-N (N_P), and one with ≈1:1 N_G:N_P composition. These materials are used as model systems to investigate the activity of N-doped carbons in the oxygen reduction reaction (ORR) using voltammetry. Results show that selectivity toward 4e-reduction of O_2 is strongly influenced by the N_G/N_P site composition, with the material possessing nearly uniform N_G/ N_P composition being the only one yielding a 4e-reduction. Computational studies on model graphene clusters are carried out to elucidate the effect of N-site homogeneity on the reaction pathway. Calculations show that for pure N_G-doping or N_P-doping of model graphene clusters, adsorption of hydroperoxide and hydroperoxyl radical intermediates, respectively, is weak, thus favoring desorption prior to complete 4e-reduction to hydroxide. Clusters with mixed N_G/N_P sites display synergistic effects, suggesting that co-presence of these sites improves activity and selectivity by achieving high theoretical reduction potentials while facilitating retention of intermediates.
机译:通过溅射沉积制备具有明确定义的组合物和平滑地形的无金属碳电极,然后用惰性和反应气体热处理。 X射线光电子能谱(XPS)和拉曼光谱表明,由此制备了三种类似N / C含量的三种碳:由几乎完全独家石墨N(N_G)组成的电极,其主要是吡啶的电极组成-n(n_p),一个带有≈1:1 n_g:n_p组成。这些材料用作模型系统,以研究使用伏安法在氧还原反应(ORR)中的N-掺杂碳的活性。结果表明,对O_2的4E减少的选择性受到N_G / N_P位点组合物的强烈影响,具有近乎均匀的N_G / N_P组合物的材料是仅产生4E减少的材料。进行了对模型石墨烯簇的计算研究,以阐明N位均匀性对反应途径的影响。计算表明,对于模型石墨烯簇的纯N_G掺杂或N_P掺杂,分别吸附氢过氧化氢和氢过氧基的中间体弱,因此在完成4E还原至氢氧化物之前的解吸。混合N_G / N_P网站的簇显示协同效应,表明这些网站的共同存在通过实现高理论降低潜力来改善活性和选择性,同时促进保留中间体。

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