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ID:36639576
大小:1.81 MB
页数:64页
时间:2019-05-13
《阴阳离子复合掺杂锰酸锂正极材料的合成及其结构与性能研究》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、桂林工学院硕士学位论文阴阳离子复合掺杂锰酸锂正极材料的合成及其结构与性能研究姓名:易凌英申请学位级别:硕士专业:应用化学指导教师:刘长久20070401桂林工学院硕士学位论文AbstractThespinelLiMn204asthecathodematerialforlithiumionbattery,atthepresenttime,theapplicationanddevelopmentwasrestrictedbecauseofMnsolubilityandJabn-Tellerdistor
2、tioncausingstructuralinstability.Becauseitexhibitsabundantresourceadvantage,lowcost,acceptableenvironmentcharacteristics.Accordingly,spinelLiMn204wasconsideredaSoneofthemostprospectiveandpreponderantcathodematerialforlithiumionbatteryandregardedbyrese
3、archers.Inrecentyears,spinelLiMn204hasbecomethefocusofresearchanddevelopmentallovertheworld.F—doping、F—Cu—doping、F-Cr-doping、F—Cu-Cr-dopinglithiummanganeseoxidesweresynthesizedbysol—gelmethod,theirstructures,electrochemicalpropertiesandactionmechanism
4、werediscussed。TheresultsshowedthatF·dopingfithiummanganeseoxideswereidentifedasasinglephaseofcubicspinel,andtheirinitialcapacitywereelevatedcomparedwithLiMn204,especiallyhadbettercyclabilityatelevatedtemperature.Despiteoftheelevatedinitialcapacity,the
5、singleFsubstitutiondeterioratedthecyclabilitywithF—dopingincreasing.ThesampleLiMn203,9F0lhadgoodproperties.Itsinitialdischargecapacitycarlbereached122.6mAh’g-1,95.5%oftheinitialdischargeeapacityWasreservedafter20cycles.Theanion-cationdopingLiCuxMn2_x0
6、39F01,LiCrxMn2.x039F0.1,LiCuxCryMn2.x.y039F0.1samplewerestillpurespinel,andthebaSicstructuredidnotchange.ElectrochemicalpropertiesWasstudiedbyaCR2025buttonbatterywhichcomposedofthesamples.Theresultofcharge—dischargetestprovedthatanion-cationdopingcanr
7、educethedisbennifitofthesingleiondoped.TheaveragevalenceofMnWasdecreasedbyFsubstitution,accordingly,theamountofMn3+wereincreased,therefore,theinitialcapacityWaselevated.ThedopedCuandCr,forthebondenergyofM(Cu、Cr)-OisstrongerthanthatofMn-Oandthehigheroc
8、tahedralsitepreferenceenergy,CallbepriortOentertheoctahedralsiteofspinelLiMn204crystallattice,whichmaketheoetahedralstructurestabilization,andreducethedissolvingofMnineletrolyte.Initialdischargecapacityof120.14mAh·g-1and120.08mAh·g‘1wereobtain
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