In Situ Coupling Strategy for Anchoring Monodisperse Co9S8 Nanoparticles on S and N Dual?Doped Graphene as a Bifunctional Electrocatalyst for Rechargeable Zn–Air Battery

In Situ Coupling Strategy for Anchoring Monodisperse Co9S8 Nanoparticles on S and N Dual?Doped Graphene as a Bifunctional Electrocatalyst for Rechargeable Zn–Air Battery

论文摘要

An in situ coupling strategy to prepare Co9S8/S and N dual?doped graphene composite(Co9S8/NSG) has been proposed. The key point of this strategy is the function?oriented design of organic compounds. Herein, cobalt porphyrin derivatives with sulfo groups are employed as not only the coupling agents to form and anchor Co9S8 on the graphene in situ, but also the heteroatom?doped agent to generate S and N dual?doped graphene. The tight coupling of multiple active sites endows the composite materials with fast electrochemical kinetics and excellent stability for both oxygen reduction reaction(ORR) and oxygen evolution reaction(OER). The obtained electrocatalyst exhibits better activity parameter(ΔE = 0.82 V) and smaller Tafel slope(47.7 mV dec-1 for ORR and 69.2 mV dec-1 for OER) than commercially available Pt/C and RuO2. Most importantly, as electrocatalyst for rechargeable Zn–air battery, Co9S8/NSG displays low charge–discharge voltage gap and outstanding long?term cycle stability over 138 h compared to Pt/C–RuO2. To further broaden its application scope, a homemade all?solid?state Zn–air battery is also prepared, which displays good charge–discharge performance and cycle performance. The function?oriented design of N4?metallomacrocycle derivatives might open new avenues to strategic construction of high?performance and long?life multifunctional electrocatalysts for wider electro?chemical energy applications.

论文目录

  • HIGHLIGHTS
  • 1 Introduction
  • 2 Experimental Section
  •   2.1 Synthesis of Catalyst
  •   2.2 Electrochemical Measurements
  •   2.3 Zn–Air Battery Assembly and Measurements
  • 3 Results and Discussion
  • 4 Conclusions
  • 文章来源

    类型: 期刊论文

    作者: Qi Shao,Jiaqi Liu,Qiong Wu,Qiang Li,Heng?guo Wang,Yanhui Li,Qian Duan

    来源: Nano-Micro Letters 2019年01期

    年度: 2019

    分类: 工程科技Ⅰ辑

    专业: 化学,材料科学

    单位: School of Materials Science and Engineering, Changchun University of Science and Technology

    基金: supported by the National Natural Science Foundation of China (Grant No. 21404014),the Science & Technology Department of Jilin Province (No. 20170101177JC)

    分类号: O643.36;TB383.1

    页码: 64-77

    总页数: 14

    文件大小: 1538K

    下载量: 38

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