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用于氧还原和水分解的超低钌诱导双金属电催化剂,其具有富集钌且混合价态的表面锚定在中空碳基质上。

Ultralow Ru-Induced Bimetal Electrocatalysts with a Ru-Enriched and Mixed-Valence Surface Anchored on a Hollow Carbon Matrix for Oxygen Reduction and Water Splitting.

作者信息

Li Guoning, Zheng Kaitian, Li Weisong, He Yongchao, Xu Chunjian

机构信息

School of Chemical Engineering and Technology, State Key Laboratory of Chemical Engineering, Chemical Engineering Research Center, Tianjin University, Tianjin 300072, China.

School of Chemical Engineering and Technology, China University of Mining & Technology, Xuzhou 221116, China.

出版信息

ACS Appl Mater Interfaces. 2020 Nov 18;12(46):51437-51447. doi: 10.1021/acsami.0c14521. Epub 2020 Nov 5.

DOI:10.1021/acsami.0c14521
PMID:33152235
Abstract

Rational design of trifunctional electrocatalysts with robust efficiency used for oxygen reduction, oxygen evolution, and hydrogen evolution reactions (ORR, OER, and HER) is of significance to renewable energy conversion techniques, which remains a challenging issue. This study integrates dominant Co/CoO with a small fraction of RuO and the CoRu alloy anchored on a hollow carbon matrix, originating from the novel Ru-doped hollow metal-organic framework (MOF) precursor, which is synthesized via tannic etching and ion exchange. Notably, the introduced ultralow Ru (1.28 wt %) not only generates new Ru-based species but also induces a Ru-enriched surface with abundant oxygen vacancies. Moreover, a suitable balance among different valencies of Co or Ru can be tuned by oxidation time, resulting in preferable Co and Ru species. Triggered by these unparalleled surface properties along with good conductivity, hollow structure, and the synergistic effect of multiple active sites, the resulting CoRu-O/A@hollow nitrogen-doped carbon (HNC) shows robust catalytic performance for ORR/OER/HER in an alkaline electrolyte. Typically, it exhibits a potential gap of 0.662 V for OER/ORR and enables an alkaline water electrolyzer with a cell voltage of 1.558 V at 10 mA cm. This work would serve as guidance for well construction of transition-metal-based trifunctional electrocatalysts by the MOF-assisted strategy or the modulation effects of low-content Ru.

摘要

合理设计用于氧还原、析氧和析氢反应(ORR、OER和HER)且具有高效稳定性的三功能电催化剂,对可再生能源转换技术具有重要意义,但这仍是一个具有挑战性的问题。本研究将占主导地位的Co/CoO与少量RuO以及锚定在空心碳基质上的CoRu合金相结合,该合金源自新型Ru掺杂空心金属有机框架(MOF)前驱体,通过单宁蚀刻和离子交换合成。值得注意的是,引入的超低Ru(1.28 wt%)不仅生成了新的Ru基物种,还诱导了具有丰富氧空位的富Ru表面。此外,Co或Ru不同价态之间的适当平衡可通过氧化时间进行调节,从而产生更优的Co和Ru物种。受这些无与伦比的表面性质以及良好的导电性、空心结构和多个活性位点的协同效应的触发,所得的CoRu-O/A@空心氮掺杂碳(HNC)在碱性电解质中对ORR/OER/HER表现出强大的催化性能。具体而言,它在OER/ORR方面表现出0.662 V的电位差,并能使碱性水电解槽在10 mA cm下的电池电压为1.558 V。这项工作将为通过MOF辅助策略或低含量Ru的调制效应来合理构建过渡金属基三功能电催化剂提供指导。

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