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Probing the effect of combustion controlled surface alloying in silver and copper towards ORR and OER in alkaline medium

机译:燃烧控制表面合金化在碱介质中银和铜中的燃烧控制表面效应

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摘要

Bi-metallic silver-copper nanoparticles were synthesized using two modes of combustion synthesis, known as Solution Combustion Synthesis (SCS) and Second Wave Combustion Synthesis (SWCS) to enhance surface alloying in Cu and Ag. The alloying in Ag and Cu nanoparticles was found to affect the adsorption of the oxygen molecule and synergistically increases the relative activity towards ORR and OER in 1 M KOH medium. The catalyst sample AgCu-21, synthesized by the SWCS showed highest activity and stability due to high concentration of Ag-Cu alloy on surface as verified by XPS, TEM and phase mapping of elements on the surface. The ORR catalyzed by AgCu-21 proceed through an overall four-electron pathway with a kinetic current density of 12.4 mA cm(-2) at -0.2 V potential. The XPS analysis of the samples indicates that the ORR and OER activity correlate well with the shifting in binding energy of Ag on Cu surface with higher degree of alloying resulting in better electrocatalytic performance.
机译:使用两种燃烧合成方式合成双金属银 - 铜纳米颗粒,称为溶液燃烧合成(SCS)和第二波燃烧合成(SWC),以增强Cu和Ag的表面合金化。发现Ag和Cu纳米颗粒中的合金化影响氧分子的吸附,并协同增加1M KOH培养基中的钻头和陶器的相对活性。由SWC合成的催化剂样品AGCU-21显示出由于XPS,TEM和表面上的元素的元素的验证的表面上的Ag-Cu合金的高浓度为Ag-Cu合金而稳定性。通过AGCU-21催化的ORR通过总体四电子通路,其在-0.2V电位下具有12.4 mA cm(-2)的动力电流密度。样品的XPS分析表明,ORR和OER活性在Cu表面上的铜表面的结合能量换档中均匀,具有较高程度的合金化导致更好的电催化性能。

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