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Advances in electrode materials for Li-based rechargeable batteries

机译:锂基充电电池的电极材料研究进展

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Rechargeable lithium-ion batteries store energy as chemical energy in electrode materials during charge and can convert the chemical energy into electrical energy when needed. Tremendous attention has been paid to screen electroactive materials, to evaluate their structural integrity and cycling reversibility, and to improve the performance of electrode materials. This review discusses recent advances in performance enhancement of both anode and cathode through nanoengineering active materials and applying surface coatings, in order to effectively deal with the challenges such as large volume variation, instable interface, limited cyclability and rate capability. We also introduce and discuss briefly the diversity and new tendencies in finding alternative lithium storage materials, safe operation enabled in aqueous electrolytes, and configuring novel symmetric electrodes and lithium-based flow batteries.
机译:可充电锂离子电池在充电过程中将能量作为化学能存储在电极材料中,并可在需要时将化学能转换为电能。已经极大地关注了筛选电活性材料,评估其结构完整性和循环可逆性以及改善电极材料的性能。这篇综述讨论了通过纳米工程活性材料和施加表面涂层来增强阳极和阴极性能的最新进展,以便有效应对诸如大体积变化,不稳定的界面,有限的可循环性和速率能力等挑战。我们还将简要介绍并讨论寻找替代锂存储材料,在水性电解质中实现安全操作以及配置新型对称电极和锂基液流电池的多样性和新趋势。

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