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On the binding mechanism of CMC in Si negative electrodes for Li-ion batteries
Authors:B Lestriez  S Bahri  I Sandu  L Rou  D Guyomard
Institution:aInstitut des Matériaux Jean Rouxel (IMN), CNRS UMR 6502, Université de Nantes, France;bCentre Énergie, Matériaux et Télécommunications (EMT), INRS, Varennes, Canada
Abstract:Silicon is investigated intensively as a promising anode material for rechargeable lithium-ion batteries. The choice of binder is very important to solve the problem of the large capacity fade observed along cycling. Although carboxymethyl cellulose (CMC) is not an elastomeric binder, it has been shown to vastly improve the cycling performance of Si electrodes. We demonstrate here that the efficiency of CMC can be attributed to its extended conformation in solution that facilitates a networking process of the conductive additive and Si particles during the composite electrode elaboration. Taking advantage of this understanding, we have adjusted the processing conditions and obtained a four times higher reversible capacity of the Si/CMC electrode than that obtained with the same electrode processed with standard conditions.
Keywords:Lithium-ion battery  Silicon  Anode materials  Binder  Cellulose  Binding mechanism
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