有机硅电解液:安全性和高电压性能研究进展课件.ppt
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- 有机硅 电解液 安全性 电压 性能 研究进展 课件
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1、有机硅电解液:安全性和高电压性能研究进展1、Background Safety issues related with Li-ion Batteries Safe electrolytes for high-voltage batteries2、Organosilicon based electrolytes High-voltage OS-based electrolytes OS-based electrolytes for Si anodes4、SummaryOutlineSafety issues of LIBs:High flammability ofcarbonate electr
2、olytes!LiFePO4 batteryNot safe enough!Safety of Lithium-Ion BatteriesSafety(abuse tolerance):When overcharged,thermalrunaway leads to fires etc.Runaway reaction caused byrelease of oxygen from cathodematerials(e.g.,LiCoO2).The development of newSafe electrolyte materials!OOORRDMC:R=CH3DEC:R=CH2CH3OO
3、EC OHighVoltageCathodeMaterialsDischargepotential(V)RedoxcoupleTheoreticalCapacity(mAh/g)PotentialRange(V)LiCoPo44.82+/3+Co1673.05.1LiNiPo45.12+/3+Ni1673.05.5Li3V2(PO4)3LiMPO43.83+/4+/5+V1973.04.8Li2CoP2O74.92+/3+Cob1092.05.5Li2MnP2O74.452+/3+Mnb1102.04.7Li2NiPO4F5.12+/3+Nib1433.05.5LiNiSO4FC5.25.42
4、+/3+Ni149Es=Qcapacity*Vvoltage1.Safety!2.High-voltage Stability!J.Power Sources,237(2013)229.High-voltage cathodes require compatible electrolytesElectrolyte Challenges:NSAdditivesDinitrilesIonic liquidsSulfoneFluorinated solventInorganic compoundsSulfonateestersCarboxylanhydridesPhosphidesCCNNnOFCO
5、OOOOCF3FFCF3R4N+R2OCFR1OFR1N+R2O-CF FFR1N+R2R3O SFOOSSOOOOSOOOOSOOOOSOOSOCF3CF3F3CF3CF3CCF3OPOOOOOBOOOOOLiBOOOOFFLiElectrolyte solvents and additives for high-voltageSolventsLiBOBLiODFBCNH HCn C NLiNi0.5Mn1.5O4/Li,3.5-4.9V,1/12 CJ Electrochem Soc,156(2009)A60.;159(2012)A370;160(2013)A838.J Power Sou
6、rces,189(2009)576.Aprotic aliphatic dinitrile solventsn=3ADN,n=5 PMNn=6 SUN,n=8 SENAdvantages:Electrochemical window(7-8V)Flash point(110,163 forADN)Dielectric constant(20-30,55 for SCN)Disadvantages:Poor compatibility with graphitePoor solubility of LiPF6 LiTFSI (V 4.3 V,corrodes collector)LiBF4(in
7、ferior ability,poor lowtemperature performance)J Electrochem Soc,149(2002)A920;J Phys Chem B,115(2011)12120.Electrochem Commun,11(2009)1418;11(2009)1073.Sulfone-Based Electrolytes Advantages:High oxidationpotential Low flammable High melting point;Poor compatibility with graphite;Wetting problem wit
8、h separatorLi4Ti5O12/1M LiPF6FEC/DMC/D2 3/4/3/LiNi0.5Mn1.5O4 (Data from ANL,USA)OFRf1Rf2OD2OFEC1 C at 55oCFluorinated Based ElectrolytesAdvantages:High oxidative stability High flash point/lowflammability(Safe)Compatible with graphiteODisadvantages:Bad performance at elevatedtemperatures(FEC)Harsh s
9、ynthesis conditions/highcost1M LiPF6 EC/DEC(3/7)1M LiPF6 EC/DMC/MFA(3/3/4)F OH C C O CH3FMFA1M LiPF6 MFALiCo2/Graphite cell(1 Ah cell);Daikindata(Japan)Fluorinated Based ElectrolytesEnergy&Environmental Science,6(2013)1806;Electrochem Commun,10(2008)783.High Low flammability High oxidation resistanc
10、e High viscosity(low conductivity&ratecapability)Poor wettingHigh costJ Power Sources,189(2009)331;225(2013)113;233(2013)115.Mix with carbonate or other co-solventperformance Ionic Liquid Electrolytesthermal stability Very low rotation barrieraround Si-O axis,(ca.0.8 KJ/mol)low linear isation energy
11、 ofthe Si-O-Si angle(1.3kJ/mol).Organosilicon(OS)Electrolytes:High ionic conductivity Non-flammability:Biocompatible Excellent wetting capability Wide liquid phase range(-40200 oC)Low viscosity-comparable withalkylcarbonates Medium wide electrochemicalwindow Very low glass transitiontemperature good
12、 thermal stabilityAlternative:Organosilicon ElectrolytesOOOOOR2R2R1R1=H,CH3R2=CH3,CH3CH2Carbonate electrolytesHighly flammable!OJ.Mater.Chem.,2008,18(31),3713-17;2010,20,8224-26.Chem.Mater.,2007,19,5734-5741.Implant neuro-stimulator micro cell(27.5 3.2 mm2,1g)Organosilicon as Safe Electrolytes1.Exce
13、llent cyclability;2.Electrochemically stable3.Nonflammable/Safe;4.Environmental benignConventional electrolytesOS electrolytesMCMB/LiNi0.8Co0.15Al0.05O2,0.8M LiBOB OS electrolytesC/5,3.0 to 4.0 V;100%efficiencyJ Power Sources,228(2013)32;196(2011)2255Electrochem Commun,8(2006)429;Chem Commun,49(2013
14、)1190Progress on Organosilicon Electrolytes(Lit.)Ionic conductivity Compatibility with graphite Oxidation potential(4.2 V)Challenges of OSelectrolytes:Compounds/cPoT/Cg-/mScm1(0)25CE/VcathodicE/VanodicEW/VSN1SN2SN3BNSTNS2.884.627.163.604.6011.612.312.815.717.3-118-111-98.4-107-1061.101.521.201.281.0
15、30.00.00.01.111.095.125.115.055.605.205.125.115.054.494.11NCH2CH2CH2C Si O CH2CH2O CH3nCNCH2CH2Si(CH3)(3-m)(OCH2CH2OCH3)mCH3dielectric constant oxidation potential Increaseddielectric constantIncreasedoxidation potentialHighconductivityOrganosilicon Compounds with Nitrile GroupCH3Discharge Capacity(
16、mAh/g)Efficiency(%)Potenial/VSpecific Capacity/mAhg-1Specific capacity/mAhg-1Capacity retention(%)Specific capacity/mAhg01401201008060105100959085803000.7C CC to 4.4V,0.5C DC to 3.0 V274 cycles:85.2%LCO/OS co-solvent/Graphite50 100 150 200 250Cycle number016014012010080604020180LCO/graphite,2.7-4.4V
17、,0.2CBNS/0.4 M LiODFB+0.6 M LiPF6TNS/0.4 M LiODFB+0.6 M LiPF6SN1/0.4 M LiODFB+0.6 M LiPF640 80 120 160052530030906012018015010 15 20Cycle number0204060100800.2 C2C1.5 C1C0.5 C0.2 CMisciblewell withcarbonateEnhancedhigh rateperformance0100 200 300 400 5006000.01.00.51.52.52.0-11M LiPF6 in SN11M LiPF6
18、 in BNS/PC(4:6 in vol.)1M LiPF6 in TNSAs EO arm increase,More compatibilitywith graphite.Organosilicon Compounds with Nitrile Group3.0Cycle numberJ.Power Sources,254,29-32(2014)Coulombic Efficiency/%Specific capacity/mAhg-102040608010008040160120Cycle number8081971009998Retention:90.4%100 cyclesCE 9
19、9.5%LCO/graphite,3.0-4.4 V0.5C,143 mAhg-1Comparison with Commercial High-VoltageElectrolytesOur high-voltage OS electrolyte(OS Ionic Liquids)101Comp.Viscosity(mPa.s)DielectricconstantTg()Conductivity-1(mS.cm)Oxidationpotential(V)FMSEOM221.799.5-108.51.464.951SM322.14.44-1120.9?Enhanced physical prop
20、ertiesFluorinationFluorinated OS Compounds with Oligo(EO)1S3M2,J.Mater.Chem.,2010,20,8224;F2MSEO2M unpublished data.-1dQ/dVCap.mAh/gSpecific capacity/mAhgCoulombic efficiency/%Potential(V vs.Li+/Li)F2MSEO2M/1M LiPF6+0.2MLiODFB0204060804016012080200240Cycle number4.4VLCO/Li,0.2C8010095908510090.8%95.
21、8%4.5V0.00.1 0.2 0.3 0.40.5Graphite/Li,0.01-3.0 V1 M LiPF6 PC:DMC:DEC:F2MSEO2M(28:35:35:2 vol.)Unpublished dataFluorinated OS Compounds with Oligo(EO)Good compatibility with1020Cycle#3040320280graphite!400360High voltage performances:LCO/C cell,94 cycles4.4V:96%capacity retention4.5V:90%capacity ret
22、entionSpecific capacity(mAh/g)Current()Efficiency(%)Potential(V vs.Li/Li)0204060801006080120100180160140200Cycle number040208060100LCO/TMOSC3GC/graphite2.7-4.4 V,C/10Highly polargroupDielectricconstant Concentrationof Li+-1012345+TMOSC3GCTEOSC3GCDSC3GCOOOOSiOOSiOSiOOOOWang JL,et al.,2013,to be submi
23、ttedCarbonate Functionalized Trialkoxysilanes(RO)3Si(CH2)nOOOOR=CH3O,CH3CH2O;n=0,2,3ODielectric constant as high as37.8!220Current/A3.03.54.04.55.05.56.0320240160800Voltage/V vs.Li/Li+commerical carbonate electrolytecommerical carbonate electrolyte+30%SN1W.E.platinumC.E.lithiumR.E.lithiumScan rate:1
24、0 mv/s(a)OS based electrolytes for 4.4V LCO/graphite cellcommercial carbonate electrolyte:GT303(LB303)commercial carbonate electrolyte+30%SN1:GT303+30%SN1-1Specific capacity/mAhg030609012015012010080commercial carbonate electrolytecommercial carbonate electrolyte+30%SN1LCO/graphite,3.0-4.4V 0.5CCycl
25、e numbercommercial carbonate electrolyte:GT303+2%wt.VC+2%wt.PScommercial carbonate electrolyte+30%SN1:70%TC 4.35+30%SN1,0.1 M LiODFB+1 M LiPF6,2%wt.VC+2%wt.PSOS based electrolytes for 4.4V LCO/graphite cell(b)160140-1Specific capacity/mAhg01020304050601000.2C0.5C0.7C1C1.5Ccommerical carbonate electr
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