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协同双金属金属有机框架衍生的铂-钴氧还原电催化剂

Synergistic Bimetallic Metallic Organic Framework-Derived Pt-Co Oxygen Reduction Electrocatalysts.

作者信息

Xiong Yin, Yang Yao, DiSalvo Francis J, Abruña Héctor D

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14850, United States.

出版信息

ACS Nano. 2020 Oct 27;14(10):13069-13080. doi: 10.1021/acsnano.0c04559. Epub 2020 Sep 22.

Abstract

The rational design of Pt-based electrocatalysts is of paramount importance for the commercialization of proton exchange membrane fuel cells (PEMFCs). Pt-Co alloys and nitrogen-doped carbons have been shown to be effective in enhancing the kinetics of the oxygen reduction reaction (ORR). Herein, we reported on two kinds of Pt-Co electrocatalysts, PtCo ordered intermetallic and PtCo disordered alloys, supported on bimetallic MOF-derived N-doped carbon. The synergistic interaction between Pt-Co nanoparticles and Co-N-C enhanced the overall ORR activity and maintained the integrity of both structures and their electrochemical properties during long-term stability testing. The optimal activity for both PtCo and PtCo occurred after 20 000 potential cycles. The enhanced performance of PtCo was ascribed to the formation of a two-atomic-layer Pt-rich shell and the lattice strain caused by the core-shell PtCo@Pt structure. The increased activity of PtCo was ascribed to the formation of large, spongy, and small solid nanoparticles during electrochemical dealloying and thus the exposure of more Pt sites on the surface. The strategy described herein advances our understanding of the structure-activity relationship in electrocatalysis and sheds light on the future development of more active and durable ORR electrocatalysts.

摘要

基于铂的电催化剂的合理设计对于质子交换膜燃料电池(PEMFC)的商业化至关重要。已证明铂钴合金和氮掺杂碳在增强氧还原反应(ORR)动力学方面是有效的。在此,我们报道了负载在双金属金属有机框架衍生的氮掺杂碳上的两种铂钴电催化剂,即铂钴有序金属间化合物和铂钴无序合金。铂钴纳米颗粒与钴氮碳之间的协同相互作用增强了整体ORR活性,并在长期稳定性测试期间保持了两种结构及其电化学性质的完整性。铂钴和铂钴的最佳活性均出现在20000次电位循环之后。铂钴性能的增强归因于形成了两原子层富铂壳层以及由核壳结构铂钴@铂引起的晶格应变。铂钴活性的增加归因于电化学脱合金过程中形成了大的、海绵状的和小的实心纳米颗粒,从而使更多的铂位点暴露在表面。本文所述策略增进了我们对电催化中结构-活性关系的理解,并为更具活性和耐久性的ORR电催化剂的未来发展提供了思路。

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