典型文献
Solid Electrolyte Interface in Zn-Based Battery Systems
文献摘要:
Due to its high theoretical capacity(820 mAh g-1),low standard electrode potential(-0.76 V vs.SHE),excellent stability in aqueous solutions,low cost,environmental friendliness and intrinsically high safety,zinc(Zn)-based batteries have attracted much attention in devel-oping new energy storage devices.In Zn battery system,the battery performance is significantly affected by the solid elec-trolyte interface(SEI),which is controlled by electrode and electrolyte,and attracts dendrite growth,electrochemical sta-bility window range,metallic Zn anode corrosion and passiva-tion,and electrolyte mutations.Therefore,the design of SEI is decisive for the overall performance of Zn battery systems.This paper summarizes the formation mechanism,the types and characteristics,and the characterization techniques associ-ated with SEI.Meanwhile,we analyze the influence of SEI on battery performance,and put forward the design strategies of SEI.Finally,the future research of SEI in Zn battery system is prospected to seize the nature of SEI,improve the battery performance and promote the large-scale application.
文献关键词:
中图分类号:
作者姓名:
Xinyu Wang;Xiaomin Li;Huiqing Fan;Longtao Ma
作者机构:
Frontiers Science Center for Flexible Electronics,Institute of Flexible Electronics,Northwestern Polytechnical University,Xi'an 710072,People's Republic of China;State Key Laboratory of Solidification Processing,School of Materials Science and Engineering,Northwestern Polytechnical University,Xi'an 710072,People's Republic of China
文献出处:
引用格式:
[1]Xinyu Wang;Xiaomin Li;Huiqing Fan;Longtao Ma-.Solid Electrolyte Interface in Zn-Based Battery Systems)[J].纳微快报(英文),2022(12):286-309
A类:
B类:
Solid,Electrolyte,Interface,Based,Battery,Systems,Due,its,high,theoretical,capacity,mAh,low,standard,electrode,potential,SHE,excellent,stability,aqueous,solutions,cost,environmental,friendliness,intrinsically,safety,zinc,batteries,have,attracted,much,attention,devel,oping,new,energy,storage,devices,battery,performance,significantly,affected,by,solid,interface,SEI,which,controlled,electrolyte,attracts,dendrite,growth,electrochemical,window,range,metallic,anode,corrosion,passiva,mutations,Therefore,design,decisive,overall,systems,This,paper,summarizes,formation,mechanism,types,characteristics,characterization,techniques,associ,ated,Meanwhile,we,analyze,influence,put,forward,strategies,Finally,future,research,prospected,seize,nature,improve,promote,large,scale,application
AB值:
0.646153
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