首页> 外文期刊>天然气化学(英文版) >Filling the in situ-generated vacancies with metal cations captured by C-N bonds of defect-rich 3D carbon nanosheet for bifunctional oxygen electrocatalysis
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Filling the in situ-generated vacancies with metal cations captured by C-N bonds of defect-rich 3D carbon nanosheet for bifunctional oxygen electrocatalysis

机译:用缺陷的3D碳纳米粘蛋白的C-N键捕获的金属阳离子填充原位生成的空位,用于双常态氧电催化

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摘要

Nitrogen-doped carbon materials with vacancies/defects have been developed as highly efficient ORR electrocatalysts but with poor activity for OER,which limits their application in rechargeable metal-air batteries.Filling the vacancies/defects with heteroatoms is expected to be an effective strategy to obtain surprising catalytic activities and improve their stability especially under the strongly oxidizing conditions during the OER process.Herein,we successfully transformed the defect-rich 3 D carbon nanosheets(DCN)into a bifunctional ORR/OER electrocatalyst(DCN-M)by utilizing the in-situ generated vacancies to capture metal cations via a modified salt-sealed strategy.By varying the metal(Fe,Ni)content,the captured metal cations in DCN-M existed in different chemical states,i.e.,metal atoms were stabilized by CàN bonds at low metal contents,while at high metal contents,bimetal particles were covered by graphene layers,taking responsibility for catalyzing the ORR and OER,respectively.In addition,the in-situ formed graphene layers with an interconnected structure facilitate the electron transport during the reactions.The Janus-feature of DCN-M in structures ensures superior bifunctional activity and good stability towards ORR/OER for the rechargeable Zn-air battery.This work provides an effective strategy to design multifunctional electrocatalysts by heteroatom filling into vacancies of carbon materials.

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  • 来源
    《天然气化学(英文版)》 |2021年第8期|47-54|共8页
  • 作者单位

    Nanomaterial & Electrocatalysis Laboratory College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 Shandong China;

    Nanomaterial & Electrocatalysis Laboratory College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 Shandong China;

    Nanomaterial & Electrocatalysis Laboratory College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 Shandong China;

    Nanomaterial & Electrocatalysis Laboratory College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 Shandong China;

    Nanomaterial & Electrocatalysis Laboratory College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 Shandong China;

    Nanomaterial & Electrocatalysis Laboratory College of Materials Science and Engineering Qingdao University of Science and Technology Qingdao 266042 Shandong China;

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