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典型文献
Particles in composite polymer electrolyte for solid-state lithium batteries:A review
文献摘要:
Solid-state lithium batteries(SSLBs)have been identified as one kind of the most promising energy conversion and storage devices because of their safety,high energy density,and long cycling life.The development of solid-state electrolyte is vital to commercialize SSLBs.Composite polymer electrolyte(CPE),derived by compositing inorganic particles into solid polymer electrolyte has become the most practical species for SSLBs because it inherits the advantages of polymer electrolyte and simultaneously achieves enhanced ionic conductivity and mechanical properties.The characteristics of inorganic par-ticles and their interaction with polymers strongly impact the performance of CPE,improving its ionic conductivity,mechanical properties,thermal and electrochemical stability,as well as interface compati-bility with both electrodes.In this review,the effects of particle characteristics including its species,size,proportion,morphology on the ionic conductivity and mechanical properties of CPE are reviewed.Mean-while,some novel composite strategies are also introduced including surface modification,hybridization,and alignment of particles in polymer matrices,as well as some new preparation methods of CPE.The interactions between particles and other components in CPE including polymer matrices or lithium salt are particularly focused herein to reveal the lithium conductive mechanism.Finally,a perspective on the direction of future CPE development for SSLBs is presented.
文献关键词:
作者姓名:
Nan Meng;Xiaogang Zhu;Fang Lian
作者机构:
School of Materials Science and Engineering,University of Science and Technology Beijing,Beijing 100083,China
引用格式:
[1]Nan Meng;Xiaogang Zhu;Fang Lian-.Particles in composite polymer electrolyte for solid-state lithium batteries:A review)[J].颗粒学报(英文版),2022(01):14-36
A类:
SSLBs,compati
B类:
Particles,composite,electrolyte,solid,state,lithium,batteries,Solid,have,been,identified,kind,most,promising,energy,conversion,storage,devices,because,their,safety,high,density,long,cycling,life,development,vital,commercialize,Composite,CPE,derived,by,compositing,inorganic,particles,into,has,become,practical,species,inherits,advantages,simultaneously,achieves,enhanced,ionic,conductivity,mechanical,properties,characteristics,polymers,strongly,impact,performance,improving,thermal,electrochemical,stability,well,interface,both,electrodes,In,this,effects,including,size,proportion,morphology,are,reviewed,Mean,while,some,novel,strategies,also,introduced,surface,modification,hybridization,alignment,matrices,new,preparation,methods,interactions,between,other,components,salt,particularly,focused,herein,reveal,conductive,mechanism,Finally,perspective,direction,future,presented
AB值:
0.509064
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