典型文献
Ultra?Low?Dose Pre?Metallation Strategy Served for Commercial Metal?Ion Capacitors
文献摘要:
Sacrificial pre-metallation strategy could compensate for the irrevers-ible consumption of metal ions and reduce the potential of anode, thereby elevating the cycle performance as well as open-circuit voltage for full metal ion capacitors (MICs). However, suffered from mas-sive-dosage abuse, exorbitant decomposition potential, and side effects of decomposition residue, the wide applicationof sacrificial approach was restricted. Herein, assisted with density functional theory calculations, strongly coupled interface (M–O–C, M = Li/Na/K) and electron donating group have been put forward to regulate the band gap and highest occupied molecular orbital level of metal oxalate -(M2C2O4), reducing polarization phenomenon and Gibbs free energy required for decomposition, which eventually decrease the practical decomposition potential from 4.50 to 3.95 V. Remarkably, full sodium ion capacitors constituted of commercial materials (activated carbon//hard carbon) could deliver a prominent energy density of 118.2 Wh -kg?1 as well as excellent cycle stability under an ultra-low dosage pre-sodiation reagent of 15–30 wt% (far less than currently 100 wt%). Noteworthily, decomposition mechanism of sacrificial compound and the relative influence on the system of MICs after pre-metallation were initially revealed by in situ differential electrochemical mass spectrometry, offering in-depth insights for comprehending the function of cathode additives. In addition, this breakthrough has been successfully utilized in high performance lithium/potassium ion capacitors with -Li2C2O4/K2C2O4 as pre-metallation reagent, which will convincingly promote the commercialization of MICs.
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中图分类号:
作者姓名:
Zirui Song;Guiyu Zhang;Xinglan Deng;Kangyu Zou;Xuhuan Xiao;Roya Momen;Abouzar Massoudi;Wentao Deng;Jiugang Hu;Hongshuai Hou;Guoqiang Zou;Xiaobo Ji
作者机构:
College of Chemistry and Chemical Engineering,Central South University,Changsha 410083,People's Republic of China;Department of Semiconductors Materials and Energy Research Center,P.O.Box 14155/4777,Tehran,Iran;College of Material Science and Engineering,Zhengzhou University,Zhengzhou 450001,People's Republic of China
文献出处:
引用格式:
[1]Zirui Song;Guiyu Zhang;Xinglan Deng;Kangyu Zou;Xuhuan Xiao;Roya Momen;Abouzar Massoudi;Wentao Deng;Jiugang Hu;Hongshuai Hou;Guoqiang Zou;Xiaobo Ji-.Ultra?Low?Dose Pre?Metallation Strategy Served for Commercial Metal?Ion Capacitors)[J].纳微快报(英文),2022(03):276-291
A类:
Metallation,Served,Sacrificial,metallation,irrevers,applicationof,M2C2O4,Li2C2O4,K2C2O4
B类:
Ultra,Low,Dose,Pre,Strategy,Commercial,Ion,Capacitors,strategy,could,compensate,ible,consumption,reduce,potential,anode,thereby,elevating,cycle,performance,well,open,circuit,voltage,capacitors,MICs,However,suffered,from,sive,dosage,abuse,exorbitant,decomposition,side,effects,residue,wide,sacrificial,approach,was,restricted,Herein,assisted,density,functional,theory,calculations,strongly,coupled,interface,Na,electron,donating,group,have,been,put,forward,regulate,band,gap,highest,occupied,molecular,orbital,level,oxalate,reducing,polarization,phenomenon,Gibbs,free,energy,required,which,eventually,decrease,practical,Remarkably,sodium,constituted,materials,activated,carbon,hard,deliver,prominent,Wh,excellent,stability,under,ultra,low,sodiation,reagent,wt,far,less,than,currently,Noteworthily,mechanism,compound,relative,influence,system,after,were,initially,revealed,situ,differential,electrochemical,mass,spectrometry,offering,depth,insights,comprehending,cathode,additives,In,addition,this,breakthrough,has,successfully,utilized,lithium,potassium,will,convincingly,promote,commercialization
AB值:
0.616251
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