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Enhancing the oxygen reduction activity by constructing nanocluster-scaled Fe2O3/Cu interfaces

机译:通过构建纳米团簇尺度的Fe2O3/Cu界面提高氧还原活性

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摘要

Interface engineering is a promising strategy to enhance the catalytic performance of electrocatalysts for the oxygen reduction reaction (ORR). However, it is still a challenge to modulate the size into a suitable range (e.g., nanocluster-scale) to make the most of the interface. Moreover, the explicit mechanism of the interface for enhancing catalytic performance is still elusive. Herein, a model catalyst (FeCu@NC) loaded with nanocluster-scaled Fe2O3/Cu interfaces was prepared by modulating the metal components of the precursor to explore the enhancement of interface engineering for the ORR. Benefiting from the synergistic effect of the strong interfacial coupling effects of Fe2O3/Cu and optimized microstructure, FeCu@NC exhibited superior ORR activity and zinc–air battery performance. Experimental and theoretical calculations revealed that the presence of the Fe2O3/Cu interface breaks the traditional cognition to endow the Cu atoms (intrinsically inferior for the ORR) with a slight positive charge, which serves as the active sites for the ORR. This study provides a novel insight into the design of advanced electrocatalysts for the ORR by interface engineering.
机译:接口工程是一个有前途的战略增强的催化性能electrocatalysts氧气减少反应(ORR)。调节到合适的大小范围(例如,nanocluster-scale)的大部分接口。为提高催化性能的接口仍然是难以捉摸的。(FeCu@NC)装载nanocluster-scaled Fe2O3 /铜接口是通过调节金属准备的组件的前兆探索奥尔增强界面工程。受益于的协同效应强烈的Fe2O3 /铜界面耦合效应和优化的微观结构,FeCu@NC展出优越的奥尔活动和锌空气电池表演计算显示的存在打破了传统的Fe2O3 /铜界面认知赋予铜原子(本质上劣质ORR)轻微的积极收费,作为活动的网站奥尔。设计先进的electrocatalysts奥尔通过接口工程。

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