Seamless Integration of an Elastomer with Electrode Matrix and its InSitu Conversion into a Solid State Electrolyte for Robust LiIon Batteries
نویسندگان
چکیده
A unique way of robustly integrating an elastomer fi lm onto a graphitic anode and then post-process it into a solid-state electrolyte for lithium-ion battery applications is reported. The mutual solvability of the elastomer and the binder of the graphitic anode (carboxymethyl cellulose, (CMC)) in dimethylformamide facilitates the fusion of the two heterogeneous layers. Dimensional dynamics evolved during the integrated elastomer conversion into a solid electrolyte by liquid electrolyte uptake reveal a notable preferential uniaxial elongation along the normal plane. In contrast, the non-integrated counterpart elongates along the transversal axis. This elastomer exhibits high ionic conductance ( ≈ 10–2 S cm − 1 ). Half-cells constructed with our electrolyte integrated electrode exhibit magnifi cent reduction and oxidation (REDOX) behavior. The effi cient charge transfer across the snugly confi ned semi-solid electrolyte/ electrode interface layer leads to a high rate capability of 0.31 mAh cm − 2
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