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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Single Pd atoms supported by graphitic carbon nitride, a potential oxygen reduction reaction catalyst from theoretical perspective
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Single Pd atoms supported by graphitic carbon nitride, a potential oxygen reduction reaction catalyst from theoretical perspective

机译:由石墨氮化物支撑的单个PD原子,潜在的氧还原反应催化剂理论上的视角

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摘要

Designing the low cost, long durability and high efficient substitutes for platinum (Pt) electrocatalyst to facilitate ORR is significant for the large-scale commercial application of fuel cells. In this work, single Pd atoms supported on graphitic carbon nitride (i.e., Pd/g-C3N4) with different Pd coverages acting as electrocatalyst for ORR is investigated by using the density functional theory calculations. Our study shows that the doping of Pd atoms can effectively decompose H2O2, leading to a four-electron mechanism via the sequential hydrogenation of *O-2 giving *O+*H2O on Pdx/g-C3N4 (x = 1-4). With the increase of Pd coverages, the energy barriers increase in the rate determining step, which are 0.39 eV, 0.63 eV, 0.68 eV and 2.61 eV for Pdx/g-C3N4 (x = 1-4), respectively. This implies that Pdx/g-C3N4 (x = 1-3) have lower energy barrier than Pt (calculated value 0.80 eV), showing high ORR activity compared with Pt. The oxidized Pd-2/g-C3N4 (i.e., Pd-2/g-C3N4-O) shows similar ORR activity to Pd-2/g-C3N4, but with different rate determining step. The working potentials are also discussed for the studied catalysts. Especially, the working potential for Pd-2/g-C3N4 is up to 0.60 V, comparable to calculated value 0.73 V for Pt/Cu(100). (C) 2016 Elsevier Ltd. All rights reserved.
机译:设计低成本,长耐久性和高效替代品的铂(PT)电催化剂,以促进ORR对于燃料电池的大规模商业应用是显着的。在这项工作中,通过使用密度函数理论计算,研究了用作用作电催化剂的不同PD覆盖物的石墨氮化物(即,Pd / G-C3N4)上的单个Pd原子。我们的研究表明,Pd原子的掺杂可以有效地分解H2O2,通过逐次氢化的* O + * H 2 O在PDX / G-C3N4(X = 1-4)上的顺序氢化,导致四电子机构。随着PD覆盖的增加,能量屏障在速率确定步骤中增加,即PDX / G-C3N4(x = 1-4)分别为0.39eV,0.63eV,0.68eV和2.61eV。这意味着PDX / G-C3N4(X = 1-3)的能量屏障比Pt(计算值0.80eV),与PT相比显示出高ORR活性。氧化PD-2 / G-C3N4(即PD-2 / G-C3N4-O)显示出与PD-2 / G-C3N4相似的ORR活性,但具有不同的速率确定步骤。还讨论了研究催化剂的工作电位。特别地,PD-2 / G-C3N4的工作电位高达0.60V,与计算值0.73V用于Pt / Cu(100)。 (c)2016 Elsevier Ltd.保留所有权利。

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