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Oxygen Reduction Reaction on Platinum-Terminated 'Onion-structured' Alloy Catalysts

机译:铂封端的“洋葱结构”合金催化剂上的氧还原反应

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Using periodic, self-consistent density functional theory (GGA-PW91) calculations, a series of onion-structured metal alloys have been investigated for their catalytic performance towards the oxygen reduction reaction (ORR). The onion-structures consist of a varying number of atomic layers of one or two metals each, pseudomorphically deposited on top of one another to form the overall structure. All catalysts studied feature a Ft overlayer, and often consist of at least one Pd layer below the surface. Three distinct ORR mechanisms were analyzed on the close-packed facets of all the structures considered. These mechanisms include a direct route of O2 dissociation and two hydrogen-assisted routes of O-O bond-breaking in peroxyl (OOH) and in hydrogen peroxide (HOOH) intermediates. A thermochemical analysis of the elementary steps provides information on the operating potential, and thereby energy efficiency of each electrocatalyst. A Sabatier analysis of catalytic activity based on thermochemistry of proton/electron transfer steps and activation energy barrier for O-O bond-breaking steps leads to a "volcano" relation between the surfaces' activity and the binding energy of O. Several of the onion-structured alloys studied here show promise for achieving energy efficiency higher than that of Pt, by being active at potentials higher than the operating potential of Pt. Furthermore, some have at least as good activity as pure Ft at that operating potential. Thus, a number of the onion-stmctured alloys studied here are promising as cathode electrocatalysts in proton exchange membrane fuel cells.
机译:使用周期性的自洽密度泛函理论(GGA-PW91)计算,研究了一系列洋葱结构的金属合金对氧还原反应(ORR)的催化性能。洋葱结构由不同数量的原子层组成,每个原子层由一种或两种金属构成,该原子层以假晶形态沉积在彼此之上,以形成整体结构。所有研究的催化剂均具有Ft覆盖层,并且通常在表面以下至少由一层Pd组成。在所考虑的所有结构的密堆积面上分析了三种不同的ORR机制。这些机制包括过氧(OOH)和过氧化氢(HOOH)中间体中O2分解的直接途径和O-O键断裂的两种氢辅助途径。基本步骤的热化学分析提供了有关工作电势的信息,从而提供了每种电催化剂的能效信息。基于质子/电子转移步骤的热化学和OO键断裂步骤的活化能垒的Sabatier催化活性分析导致表面活性和O的结合能之间存在“火山”关系。几种洋葱结构通过在高于Pt工作电位的电势下具有活性,本文研究的合金显示出有望实现比Pt更高的能源效率。此外,在该操作电位下,有些具有至少与纯Ft一样好的活性。因此,本文研究的许多洋葱结构合金有望成为质子交换膜燃料电池中的阴极电催化剂。

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