首页> 中文期刊> 《能源化学:英文版 》 >Slurry-like hybrid electrolyte with high lithium-ion transference number for dendrite-free lithium metal anode

Slurry-like hybrid electrolyte with high lithium-ion transference number for dendrite-free lithium metal anode

             

摘要

Lithium metal anode is regarded as the ultimate choice for next-generation energy storage systems,due to the lowest negative electrochemical potential and super high theoretical specific capacity.However,the growth of lithium dendrite during the cycling process is still one of the most critical bottlenecks for its application.In this work,a slurry-like hybrid electrolyte is proposed towards the application for lithium metal anode,which is composed of a liquid electrolyte part and a nanometric silane-Al2O3 particle part.The hybrid electrolyte shows high ionic conductivity(3.89×10-3 S cm-1 at 25℃)and lithium-ion transference number(0.88).Especially,the resistance of hybrid electrolyte decreases compared to that of liquid electrolyte,while the viscosity of hybrid electrolyte increases.It is demonstrated that the hybrid electrolyte can effectively suppress the growth of lithium dendrite.Stable cycling of Li/Li cells at a current density up to 1 mA cm-2 is possible.The hybrid electrolyte helps to uniform the lithium ion flux inside the battery and partly comes from the formation of a rigid and highly conductive hybrid interfacial layer on the surface of lithium metal.This work not only provides a fresh way to stabilize lithium metal anode but also sheds light on further research for electrolyte optimization and design of lithium metal battery system.

著录项

  • 来源
    《能源化学:英文版 》 |2020年第9期|P.375-382I0011|共9页
  • 作者单位

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    School of Materials Science and Engineering Jingdezhen Ceramic Institute Jingdezhen 333403 Jiangxi China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

    Advanced Li-ion Battery Engineering Laboratory and Key Laboratory of Graphene Technologies and Applications of Zhejiang Province Ningbo Institute of Materials Technology and Engineering(NIMTE) Chinese Academy of Sciences Ningbo 315201 Zhejiang China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 蓄电池 ;
  • 关键词

    Hybrid electrolyte; Slurry; Organic-inorganic; Lithium-ion transference number; Lithium metal batteries;

    机译:混合电解质;浆料;有机-无机;锂离子转移数;锂金属电池;
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