Polyoxovanadate Li7[V15O36(CO3)] and its derivative γ-LiV2O5 as superior performance cathode materials for aqueous zinc-ion batteries
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Reference79 articles.
1. Recent advances in Zn-ion batteries;Song;Adv. Funct. Mater.,2018
2. Dual mechanism of ion (de)intercalation and iodine redox towards advanced zinc batteries;Yang;Energy Environ. Sci.,2023
3. Inducing preferential growth of the Zn (002) plane by using a multifunctional chelator for achieving highly reversible Zn anodes;Li;Nanoscale,2024
4. Advanced rechargeable zinc-based batteries: Recent progress and future perspectives;Li;Nano Energy,2019
5. Designing advanced aqueous zinc-ion batteries: Principles, strategies, and perspectives;Li;Energy Environ. Mater.,2022
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