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A review of the features and analyses of the solid electrolyte interphase in Li-ion batteries
Authors:Pallavi Verma  Petr Novák
Affiliation:Paul Scherrer Institut, Electrochemistry Laboratory, CH-5232 Villigen PSI, Switzerland
Abstract:The solid electrolyte interphase (SEI) is a protecting layer formed on the negative electrode of Li-ion batteries as a result of electrolyte decomposition, mainly during the first cycle. Battery performance, irreversible charge “loss”, rate capability, cyclability, exfoliation of graphite and safety are highly dependent on the quality of the SEI. Therefore, understanding the actual nature and composition of SEI is of prime interest. If the chemistry of the SEI formation and the manner in which each component affects battery performance are understood, SEI could be tuned to improve battery performance. In this paper key points related to the nature, formation, and features of the SEI formed on carbon negative electrodes are discussed. SEI has been analyzed by various analytical techniques amongst which FTIR and XPS are most widely used. FTIR and XPS data of SEI and its components as published by many research groups are compiled in tables for getting a global picture of what is known about the SEI. This article shall serve as a handy reference as well as a starting point for research related to SEI.
Keywords:AAS  atomic absorption spectroscopy  AES  Auger electron spectroscopy  AFM  atomic force microscopy  ARC  accelerated rate calorimetry  ATR  attenuated total reflectance  BET  Brunauer-Emmett-Teller  DEC  diethyl carbonate  DMC  dimethyl carbonate  DSC  differential scanning calorimetry  EC  ethylene carbonate  EELS  electron energy loss spectroscopy  EIS  electrochemical impedance spectroscopy  ELSA  elemental line scan analysis  EMC  ethyl methyl carbonate  EQCM  electrochemical quartz crystal microbalance  ESCA  electron spectroscopy for chemical analysis  FIB  focused ion beam  FTIR  Fourier transform infrared spectroscopy  IC  ion chromatography  ICL  irreversible charge &ldquo  loss&rdquo    IRAS  infrared absorption spectroscopy  k  rate constant  NMR  nuclear magnetic resonance  PC  propylene carbonate  PEO  polyethylene oxide  PVDF  polyvinylidene difluoride  PVDF-HFP  polyvinylidene difluoride-hexafluoropropylene  SEI  solid electrolyte interphase  SEM  scanning electron microscopy  SIMS  secondary ion mass spectroscopy  SNIFTIR  subtractively normalized interfacial Fourier transform infrared  SPM  scanning probe microscopy  STM  scanning tunneling microscopy  TEM  transmission electron microscopy  THF  tetrahydrofuran  ToF-MS  time of flight-mass spectroscopy  ToF-SIMS  time of flight-secondary ion mass spectroscopy  TPD  temperature programmed desorption  UHV  ultra high vacuum  VC  vinylene carbonate  XANES  X-ray absorption near edge structure  XPS  X-ray photoelectron spectroscopy  XRD  X-ray diffraction
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