High performance LiMnFePO4/Li4Ti5O12full cells by functionalized polymeric additives

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Abstract

Herein, we report a novel class of additives based on functional polymers for electrode fabrication. A small quantity of a 2,3-dimethoxybenzene (DMB)-based polymer was mixed with a state-of-the-art binder, poly(vinylene difluoride) (PVDF), to greatly improve the first fast charge-discharge and high-voltage LiMnFePO4/Li4Ti5O12 batteries operating at 3.0 V. Dual effects of the polymer were reported, i.e., trapping of soluble Mn2+ of positive electrodes and the in situ formation of a passivation layer on the negative electrode (AlF3). Both effects are possible because a functional polymer was used; this synergic effect enhances the cell performance by 16.7% after more than 300 cycles at 45 °C and 1C. This journal is

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Daigle, J. C., Rochon, S., Asakawa, Y., Fleutot, B., Mallet, C., Amouzegar, K., & Zaghib, K. (2021). High performance LiMnFePO4/Li4Ti5O12full cells by functionalized polymeric additives. Materials Advances, 2(1), 253–260. https://doi.org/10.1039/d0ma00679c

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