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Density Functional Theory Study of Pt_3M Alloy Surface Segregation with Adsorbed O/OH and Pt_3Os as Catalysts for Oxygen Reduction Reaction

机译:吸附O / OH和Pt_3Os催化氧还原反应的Pt_3M合金表面偏析的密度泛函理论研究。

摘要

Using quantum mechanics calculations, we have studied the segregation energy with adsorbed O and OH for 28 Pt_3M alloys, where M is a transition metal. The calculations found surface segregation to become energetically unfavorable for Pt_3Co and Pt_3Ni, as well as for the most other Pt binary alloys, in the presence of adsorbed O and OH. However, Pt_3Os and Pt_3Ir remain surface segregated and show the best energy preference among the alloys studied for both adsorbed species on the surface. Binding energies of various oxygen reduction reaction (ORR) intermediates on the Pt(111) and Pt_3Os(111) surfaces were calculated and analyzed. Energy barriers for different ORR steps were computed for Pt and Pt_3Os catalysts, and the rate-determining steps (RDS) were identified. It turns out that the RDS barrier for the Pt_3Os alloy catalyst is lower than the corresponding barrier for pure Pt. This result allows us to predict a better ORR performance of Pt_3Os compared to that of pure Pt.
机译:使用量子力学计算,我们研究了28种Pt_3M合金中O和OH吸附时的偏析能,其中M为过渡金属。计算发现,在存在被吸附的O和OH的情况下,对于Pt_3Co和Pt_3Ni以及大多数其他Pt二元合金,表面偏析在能量上不利。但是,Pt_3Os和Pt_3Ir保持表面分离,并且在所研究的合金中,对于表面上的两种吸附物质均显示出最佳的能量偏好。计算并分析了Pt(111)和Pt_3Os(111)表面上各种氧还原反应(ORR)中间体的结合能。计算了Pt和Pt_3Os催化剂不同ORR步骤的能垒,并确定了速率决定步骤(RDS)。结果表明,Pt_3Os合金催化剂的RDS势垒低于纯Pt的相应势垒。与纯Pt相比,该结果使我们可以预测Pt_3Os的ORR性能更好。

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