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Phase-boundary regulation boosting electrochemical reactivity of tin-based anodes for magnesium-ion batteries
文献摘要:
Tin(Sn)-based materials are promising anodes for magnesium-ion batteries(MIBs)owing to their low reaction voltages,high theoretical specific capacities and good compatibility with conventional electrolytes.However,relatively arduous alloying reaction and sluggish diffusion kinetics limit their practical applications.Herein,we proposed a general strategy to regulate the electrochemical reactivity and performance of Sn-based anodes for Mg storage through the introduction of the second phase and phase boundary.The biphase Sn-Al,Sn-Pb and Sn-ZnO films were further fabricated via magnetron co-sputtering.Taking Sn-Al as an example,it has been revealed that the introduction of Al can effectively stimulate the electrochemical reaction of Sn with Mg in either nanoscale or bulk through combining experiments with density-functional theory calculations.Specially,the rolled Sn-Al electrode exhibits superior long-term stability over 5,000 cycles.Additionally,the Mg-storage mechanism of the Sn-Al electrode was investigated by operando X-ray diffraction.The Sn-Al anodes also demonstrate good compatibility with simple Mg-salt-based electrolytes like Mg(TFSI)2 in full cells.More importantly,it has been authenticated that the activation effect of second phase and phase boundary to Sn is also applicable to Pb and ZnO.Our findings may provide a favorable reference for the development of alloy-type anodes for MIBs.
文献关键词:
作者姓名:
Meijia Song;Yan Wang;Conghui Si;Wenrun Cui;Wanfeng Yang;Guanhua Cheng;Zhonghua Zhang
作者机构:
Key Laboratory for Liquid-Solid Structural Evolution and Processing of Materials(Ministry of Education),School of Materials Science and Engineering,Shandong University,Jinan 250061,China;School of Materials Science and Engineering,University of Jinan,Jinan 250022,China;Shandong Provincial Key Laboratory of Processing and Testing Technology of Glass&Functional Ceramics,School of Materials Science and Engineering,Qilu University of Technology(Shandong Academy of Sciences),Jinan 250353,China
引用格式:
[1]Meijia Song;Yan Wang;Conghui Si;Wenrun Cui;Wanfeng Yang;Guanhua Cheng;Zhonghua Zhang-.Phase-boundary regulation boosting electrochemical reactivity of tin-based anodes for magnesium-ion batteries)[J].中国科学:化学(英文版),2022(07):1433-1444
A类:
biphase
B类:
Phase,boundary,regulation,boosting,electrochemical,reactivity,anodes,magnesium,batteries,Tin,Sn,materials,are,promising,MIBs,owing,their,low,reaction,voltages,high,theoretical,specific,capacities,good,compatibility,conventional,electrolytes,However,relatively,arduous,alloying,sluggish,diffusion,kinetics,limit,practical,applications,Herein,proposed,general,strategy,regulate,performance,Mg,storage,through,introduction,second,Pb,ZnO,films,were,further,fabricated,via,magnetron,sputtering,Taking,example,been,revealed,that,can,effectively,stimulate,either,nanoscale,bulk,combining,experiments,density,functional,theory,calculations,Specially,rolled,electrode,exhibits,superior,long,term,stability,over,cycles,Additionally,mechanism,was,investigated,by,operando,ray,diffraction,also,demonstrate,simple,salt,like,TFSI,full,cells,More,importantly,authenticated,activation,applicable,Our,findings,may,provide,favorable,reference,development,type
AB值:
0.577594
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