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      Factors Limiting Li+Charge Transfer Kinetics in Li-Ion Batteries

      , , , ,
      Journal of The Electrochemical Society
      The Electrochemical Society

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          Nonaqueous liquid electrolytes for lithium-based rechargeable batteries.

          Kang Xu (2004)
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            Advanced Model for Solid Electrolyte Interphase Electrodes in Liquid and Polymer Electrolytes

            E Peled (1997)
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              Electrode-electrolyte interface in Li-ion batteries: current understanding and new insights.

              Understanding reactions at the electrode/electrolyte interface (EEI) is essential to developing strategies to enhance cycle life and safety of lithium batteries. Despite research in the past four decades, there is still limited understanding by what means different components are formed at the EEI and how they influence EEI layer properties. We review findings used to establish the well-known mosaic structure model for the EEI (often referred to as solid electrolyte interphase or SEI) on negative electrodes including lithium, graphite, tin, and silicon. Much less understanding exists for EEI layers for positive electrodes. High-capacity Li-rich layered oxides yLi2-xMnO3·(1-y)Li1-xMO2, which can generate highly reactive species toward the electrolyte via oxygen anion redox, highlight the critical need to understand reactions with the electrolyte and EEI layers for advanced positive electrodes. Recent advances in in situ characterization of well-defined electrode surfaces can provide mechanistic insights and strategies to tailor EEI layer composition and properties.
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                Author and article information

                Journal
                Journal of The Electrochemical Society
                J. Electrochem. Soc.
                The Electrochemical Society
                0013-4651
                1945-7111
                January 25 2018
                2018
                January 30 2018
                2018
                : 165
                : 2
                : A361-A367
                Article
                10.1149/2.1221802jes
                67b5b852-fd5f-4cb6-876d-db710b2c7ae3
                © 2018

                Free to read

                http://creativecommons.org/licenses/by/4.0/

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