Abstract
We present efforts to develop a highly tunable, nanoporous battery separator derived from functionalized block copolymers (polyolefins) with low cost precursors. Separator sample preparation, physical and electrochemical characterizations will be presented and discussed. Our study shows that the strategy of preparing block copolymer derived nanoporous separators provides a very promising and powerful tool to allow exquisite tuning of performance and safety features of the nanostructured separator for the next generation Li-ion batteries.
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