Abstract:The increasing demands for sustainable energy storage technologies have prompted extensive research in the development of eco-friendly materials for lithium-ion batteries (LIBs). This research article presents the design of biobased latexes, which are fluorine-free and rely on renewable resources, based on isobornyl methacrylate (IBOMA) and 2-octyl acrylate (2OA) to be used as binders in batteries. Three different compositions of latexes were investigated, varying the ratio of IBOMA and 2OA: (1) Poly2OA homopo… Show more
“…The resulting outcome included high specific capacities at elevated C rates, with values of 128 and 100 mA h g −1 at 3C and 5C, respectively, and a commendable retention capacity of 84% after 90 cycles at 0.5C. 157…”
Section: Performance Of Aqueous Binders In Nmc Electrodes: Electroche...mentioning
This review addresses the aqueous processing of high-nickel NMC materials and its challenges, including pH elevation and lithium leaching. Tailored binder selection is crucial, offering a strategic pathway for sustainable battery manufacturing.
“…The resulting outcome included high specific capacities at elevated C rates, with values of 128 and 100 mA h g −1 at 3C and 5C, respectively, and a commendable retention capacity of 84% after 90 cycles at 0.5C. 157…”
Section: Performance Of Aqueous Binders In Nmc Electrodes: Electroche...mentioning
This review addresses the aqueous processing of high-nickel NMC materials and its challenges, including pH elevation and lithium leaching. Tailored binder selection is crucial, offering a strategic pathway for sustainable battery manufacturing.
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