LiionBatteryintroduction锂离子电池介绍.pptx
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1、CONTENTSIntroductionLi-ion Battery Fundamentals and Electrical BehaviorMonitoring and SafetyGeneral Battery Characteristics Page 1第1页/共49页1.2 Li-ion Battery Fundamentals and Electrical Behavior1.2.1 Battery Structure1.2.2 Fundamentals1.2.3 Materials and their influences1.2.3 Electrical behavior1.2.4
2、 Equivalent circuitPage 2第2页/共49页Li-ion Battery StructureCylindrical Li-ion Battery structureSeparator,cathode and anode are around the column.Page 318650第3页/共49页Li-ion Battery StructurePrismatic Li-ion Battery StructurePage 4第4页/共49页Li-ion Battery StructureCoin Li-ion Battery structurePage 5第5页/共49
3、页Li-ion Battery StructureThin Film Li-ion Battery Structure10-100um thinkness.for microminiature device Page 6第6页/共49页Li-ion Battery StructurePage 7第7页/共49页Li-ion Battery StructureLi-ion Battery Structure:Anode CathodeSeparator Electrolyte Enclosure and packagecomponentmaterialexampleAnodeLi-embedde
4、d Transition metal oxidesLiCoO4,LiMnO4,LiCoMnOx,LiFePO4CathodeLi-embeddable compound etc.(synthetic)graphiteElectrolyteLiPF6 alkyl acid estersEC,PC,EDCSeparatorpolyene porous membranePE,PP,PP/PE/PPEnclosure and packagemetalsteel,aluminumPage 8第8页/共49页Li-ion Battery Performance requirements of anode
5、materialshigh specific energyhigh specific powerlow self-discharge ratiolow costlong lifehigh safety levelPage 9第9页/共49页Capacity Calculation:1mol Li+,Q=96500C(F=NA*e=96500C/mol)1C=1AsTake LiFePO4 for example:The formula weight of LiFePO4 is 157.756 g/mol,(1g/157.756g/mol)*96500C/mol/3600s=170 mAh/gT
6、he formula weight of LiCoO2 is 97.88 g/mol,(1g/97.88g/mol)*96500C/mol/3600s=274 mAh/gLi-ion Battery Capacity Calculation for AnodePage 10第10页/共49页LiFePO4LiMnOxLiCoO2LiNiO2LiNiCoMnO2main componentLiFePO4LiMn2O4LiMnO2LiCoO2LiNiO2LiNiCoMnO2ennergy density(mAh/g)170 ideal148286274274278130-140 actual100
7、-120200135-140190-210155-165voltage(V)3.2-3.73.8-3.93.4-4.33.62.5-4.13.0-4.5cycle life2000500inferior300inferior800transition metalvery richrichrichpoorrichpoorenvironmantalnon-poisonousnon-poisonousnon-poisonousradioactivity(Co)poisonous(Ni)poisonoussafetygreatgoodgoodbadbadnot badtemp()-207550low
8、temp stable-20 55N/A-20 55Li-ion Battery anode materials and their peformancesPage 11第11页/共49页LiCoO2LiMn2O4poor safety,high costSynthesis difficult serious attenuationLiNiO2Li-ion battery anode materialsPage 12第12页/共49页Li-ion battery anode material developmentpower fieldcommunication fieldLiFePO4LiM
9、n2O4Li-ternary compoundLiNiO2Ni-Hlead-acidLiCoO2power field:LiFePO4 and LiMn2O4 have the advantages of low cost,safety and heat minocation field:Li-ternary compound and LiNiO2 have higher specific energy.Li-ion battery anode materialPage 13第13页/共49页Li-ion battery Performance requirements of cathode
10、materialsLi+can be embed and seperated rapidly.good reversibility of Li+reaction with seldom crystal structure change.weak electric potential change in the reaction process.good surface texture(Solid Electrolyte Interface Film,SEI)stability and compactedlarge diffusion coefficient for Li+diffusion i
11、n cells,easy to charge quickly.Page 14第14页/共49页cathode materialsungraphitisedungraphitisedcarboncarbongraphite graphite stratified structurestratified structureTransition metal oxidessilica-basedmaterialLi4Ti5O12spinel structuretin-basedmaterialmetal LiLi-ion battery Cathode materialsPage 15第15页/共49
12、页synthetic graphitesilicon carbon alloyLi-ion battery cathode materials performancecathode materialscapacityprocess-abilitytemperature stabilitydisadvantagesgraphite carbon360mAh/geasygoodlow capacitySi alloy2500mAh/geasygoodvolume change Sn alloy800-900mAh/ghardbadbad porformance for high rate disc
13、ahrgemetal Li3860mAh/geasybaddendritic crystalPage 16第16页/共49页carbon materials potential risk Li4Ti5O12large mount of capacity,less expension,long cycle life and storage life,surpport quick charge.etc.Metal lithium is deposited on the carbon surface.It can explosively react with a variety of materia
14、ls.Burning,explode and gas expansion are all protential safety problems.carbon materialsLi4Ti5O12Fig.Li4Ti5O12 SEM photo and its chg/dsg performanceLi-ion battery cathode materialsPage 17第17页/共49页二次锂电池正负极材料电压二次锂电池正负极材料电压-容量分布图容量分布图Voltage versus capacity for positive-and negative-electrode materials
15、 presently used or under serious considerations for the next generation of rechargeable Li-based cells.Li-ion battery electrode Voltage-Capacity distributionPage 18第18页/共49页Fig.2 electrolyte product manufacture processLi-ion battery electrolyteElectrolyte is one of four major part of the Li-ion batt
16、ery,which plays an important role in Li+transfer and has an effect on Capacity,work temperature range cycle and safety of the battery.Electrolyte is usually 15%of the total weight and 32%of total volume,and its purity is worth attention in the manufacturing process.raw-materialsolvent-preparepurific
17、ationfine purificationelectrolytesolution preparestirfinished productPage 19第19页/共49页keep liquid state in large temperature range,high Li+conductivity(10-2S/cm).good chemical and heat stability,hard to evaporation and reaction with others.high protential up to 4.5V(vs.Li/Li+)。non-toxiceasy to prepar
18、e,low costLi-ion battery Performance requirements of electrolyte materialsPage 20第20页/共49页safety,stability,compatibility with cathode,conductivity,high dielectric constant,low posed by solvent and additive中文名称short namedielectric constantviscosity(mPas)melting point()boiling point()decomposition vol
19、tage(V)乙烯碳酸酯EC901.9372385.8丙烯碳酸酯PC652.5-492425.8二甲基碳酸酯DMC3.10.593905.7二乙基碳酸酯DEC2.80.75-431275.5乙基甲基碳酸酯EMC2.90.65-55108-二甲醚DME7.20.46-58844.9solventLi-ion battery electrolyte solventPage 21第21页/共49页Li-ion battery electrolyte additiveAdditive NameApplicationComponent亚乙烯碳酸酯improve SEI film performanceS
20、O2/Co2/VC磷酸三甲酯improve eletrolyte safetyTMP冠醚和穴状化合物improve electrolyte conductivityether,etc.金属氧化物和盐balance acid concentrationAl2O3,MgO,BaO,Li/CaxCOyPage 22第22页/共49页1.liquid state,solution.high purity solvent,electrolyte(LiPF6),additive.2.solid state,ploymer.polymer lithium ion battery,LIP.Li-ion bat
21、tery electrolytePage 23electrolyte classifychemical formulafeatures高氯酸锂LiClO4explosive四氟硼酸锂LiBF4stability,poor conductivity and cyclity六氟砷酸锂LiAsF6effeciency,stability,but cost high and poisonous六氟磷酸锂LiPF4good conductivity,poor thermal stability三氟甲基磺酰LiN(SO2CF3)good thermal stability and cyclity,but
22、poor conductivity双草酸硼酸锂LiBOBgood thermal stability and chemical stability,but low solubility and poor conductivity第23页/共49页play an improtant role in:keep anode and cathode separateallow ion to pass through itself and charge to transferLi-ion battery separatorPage 24第24页/共49页Li-ion battery separator
23、performanceabilitypurposeperformanceposition separator,insulationanode and cathode particles isolation aviod slef-discharging,internal short circuitporinessLi-ion transferhigh conductivity,low internal impendancechemical stabilityno reaction and consumptionlong storage lifeelectrolyte wettabilityful
24、ly contactedion conductivitylong cycle lifemechanical propertyin case of crack by force from dendritic crystal or the other.long storage lifeself-protectpores close when temperature risesafetyPage 25第25页/共49页porous ploymer thin film(PP,PE,PP/PE/PP)mechanical property,wettablity,pore close temp point
25、 and fusing point conflictnon-woven fabrics,Separion 无纺布型high porosity nanofiber filmSeparion thin filmploymer electrolytesolid,gelLi-ion Battery SeparatorPage 26第26页/共49页Celgard2400 separator,PP,25m,37%porosity,0.117m*0.042m pore size Li-ion battery separator examplePage 27第27页/共49页Li-ion Battery C
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