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时间:2019-08-06
《SSVIP--Synthesis of porous-CoN nanoparticles》由会员上传分享,免费在线阅读,更多相关内容在学术论文-天天文库。
1、ViewArticleOnline/JournalHomepage/TableofContentsforthisissueJournalofDynamicArticleLinksC2、B.V.R.Chowdari*Received29thMarch2012,Accepted21stJune2012DOI:10.1039/c2jm31969aCoNnanoparticlesarepreparedbynitridationofCo3O4inthepresenceofNH3+N2atmosphereandcharacterizedbyX-raydiffraction(XRD),Þeldemission-scanningelectronmicroscopy(FE-SEM),highresolution-transmissionelectronmicroscopy(HR-TEM)3、alongwithselectiveareaelectrondiffraction(SAED)andBETsurfaceareatechniques.TheLi-cyclingperformanceofporous-CoNnanoparticlesisevaluatedbygalvanostaticcyclingandcyclicvoltammetry(CV)incellswithLi-metalasthecounterelectrodeinthevoltagerangeof0.005Ð3.0Vatambienttemperature.Whencycledat250111mAg(0.4、31C;1C¼800mAg),aÞrst-cyclereversiblecapacityof780(5)mAhg(2.13molesof1Li)isnoticed.Duringcycling,anincreaseinreversiblecapacityisobservedfrom710(5)mAhgth1th(1.93molesofLi)atthe5cycleto790(5)mAhg(2.15molesofLi)atthe25cycle.Afterthis,1thcapacity-fadingisnoticedandreaches660(5)mAhg(1.8molesofLi5、)attheendofthe60cycle.Thecapacity-fadingis16%intherangeof25Ð60cycles.Excellentratecapabilityisshownwhenthecelliscycledat1.25C(upto60cycles).ThecoloumbicefÞciencyisfoundtobe>96%intherangeof10Ð60cycles.FromCV,theaveragechargeanddischargepotentialsare;2.2and0.87V,respectively.TheLi-cyclingbehaviorofp6、orous-CoNnanoparticlesisdiscussedbasedontheobservedcapacity,exsituXRD,HR-TEMandSAEDdata.Theresultsshowthatporous-CoNnanoparticlesareaprospectiveanodematerialforLi-ionbatteries.Introductionutilizationofthemetal(M)oxidationstatesavailable,andasaresultyieldsalargereversiblecapacity.Considerableattent7、ionhasbeenpaidtoelectrochemicalstorage11–14Similartooxides,transitionmetalnitrideswerestudieddevicessuchaslithium-ionbatteries(LIBs)ofhighenergyandthoroughlyasprospectiveanodematerialsduetotheirhighpowerdensityto
2、B.V.R.Chowdari*Received29thMarch2012,Accepted21stJune2012DOI:10.1039/c2jm31969aCoNnanoparticlesarepreparedbynitridationofCo3O4inthepresenceofNH3+N2atmosphereandcharacterizedbyX-raydiffraction(XRD),Þeldemission-scanningelectronmicroscopy(FE-SEM),highresolution-transmissionelectronmicroscopy(HR-TEM)
3、alongwithselectiveareaelectrondiffraction(SAED)andBETsurfaceareatechniques.TheLi-cyclingperformanceofporous-CoNnanoparticlesisevaluatedbygalvanostaticcyclingandcyclicvoltammetry(CV)incellswithLi-metalasthecounterelectrodeinthevoltagerangeof0.005Ð3.0Vatambienttemperature.Whencycledat250111mAg(0.
4、31C;1C¼800mAg),aÞrst-cyclereversiblecapacityof780(5)mAhg(2.13molesof1Li)isnoticed.Duringcycling,anincreaseinreversiblecapacityisobservedfrom710(5)mAhgth1th(1.93molesofLi)atthe5cycleto790(5)mAhg(2.15molesofLi)atthe25cycle.Afterthis,1thcapacity-fadingisnoticedandreaches660(5)mAhg(1.8molesofLi
5、)attheendofthe60cycle.Thecapacity-fadingis16%intherangeof25Ð60cycles.Excellentratecapabilityisshownwhenthecelliscycledat1.25C(upto60cycles).ThecoloumbicefÞciencyisfoundtobe>96%intherangeof10Ð60cycles.FromCV,theaveragechargeanddischargepotentialsare;2.2and0.87V,respectively.TheLi-cyclingbehaviorofp
6、orous-CoNnanoparticlesisdiscussedbasedontheobservedcapacity,exsituXRD,HR-TEMandSAEDdata.Theresultsshowthatporous-CoNnanoparticlesareaprospectiveanodematerialforLi-ionbatteries.Introductionutilizationofthemetal(M)oxidationstatesavailable,andasaresultyieldsalargereversiblecapacity.Considerableattent
7、ionhasbeenpaidtoelectrochemicalstorage11–14Similartooxides,transitionmetalnitrideswerestudieddevicessuchaslithium-ionbatteries(LIBs)ofhighenergyandthoroughlyasprospectiveanodematerialsduetotheirhighpowerdensityto
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