Hydrogel electrolyte membrane with regulated pore effect to stabilize zinc anode in aqueous zinc-ion batteries
Author:
Publisher
Elsevier BV
Subject
Filtration and Separation,Physical and Theoretical Chemistry,General Materials Science,Biochemistry
Reference42 articles.
1. A water-gating and zinc-sieving lignocellulose nanofiber separator for dendrite-free rechargeable aqueous zinc ion battery;Li;Chem. Eng. J.,2023
2. A nanocellulose-mediated, multiscale ion-sieving separator with selective Zn2+ channels for durable aqueous zinc-based batteries;Zhang;Energy Storage Mater.,2023
3. Multi-protection of zinc anode via employing a natural additive in aqueous zinc ion batteries;Zheng;Chem. Eng. J.,2023
4. Sustainable biopolymeric hydrogel interphase for dendrite-free aqueous zinc-ion batteries;Park;Chem. Eng. J.,2022
5. A safe polyzwitterionic hydrogel electrolyte for long-life quasi-solid state zinc metal batteries;Leng;Adv. Funct. Mater.,2020
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1. Polypyrrole functionalized cellulose/polypropylene composite membrane with zinc inducing and dendrite resistance for robust zinc-ion batteries;Journal of Membrane Science;2024-12
2. Biomass-based functional materials for rechargeable Zn-ion batteries;Energy Storage Materials;2024-08
3. Dendrite-free, long cycle life Zn–MnO2 battery based on a polyanionic hydrogel electrolyte by constructing transfer channels and regulating solvation structure;Journal of Power Sources;2024-08
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