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Regulating Zn Deposition via Honeycomb-like Covalent Organic Frameworks for Stable Zn Metal Anodes
ACS Applied Materials & InterfacesThe irreversible chemistry of the Zn anode, attributed to parasitic reactions and the growth of zinc dendrites, is the bottleneck in the commercialization of aqueous zinc-ion batteries. Herein, an efficient strategy via constructing an organic protective layer configured with a honeycomb-like globular-covalent organic framework (G-COF) was constructed ...
Pan He +5 more
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A “Zn2+ in Salt” Interphase Enabling High‐Performance Zn Metal Anodes
SmallAbstractZinc metal is a promising anode candidate for aqueous zinc ion batteries due to its high theoretical capacity, low cost, and high safety. However, its application is currently restricted by hydrogen evolution reactions (HER), by‐product formation, and Zn dendrite growth.
Mengxi Bai +8 more
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Kinetics‐Mediating Artificial Interphase for Ultrafast Zn Metal Anodes
Advanced Functional MaterialsAbstractAchieving long‐term cycling stability of Zn metal anodes at high rates is crucial for the practical applications of aqueous Zn ion batteries. However, the sluggish kinetics of Zn deposition and uncontrollable dendrite growth at the electrolyte/electrode interface will inevitably lead to inferior energy efficiency and limited cycling lifespan ...
Qiaoyun Liu +16 more
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Constructing Highly Stable Zinc Metal Anodes via Induced Zn(002) Growth
ACS Applied Materials & InterfacesThe nonuniform electric field at the surface of a zinc (Zn) anode, coupled with water-induced parasitic reactions, exacerbates the growth of Zn dendrites, presenting a significant impediment to large-scale energy storage in aqueous Zn-ion batteries.
Shiyang Hu +6 more
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3D MXene/PVA Aerogel Enabling a Dendrite-Free Zn Metal Anode
ACS Applied Materials & InterfacesAqueous zinc-ion batteries have attracted widespread attention due to their low cost and high safety. Unfortunately, their commercial applications are greatly inhibited by the negative effects of zinc dendrites and side reactions. A solution that utilizes a 3D host can help mitigate these issues.
Zhihui Chen +9 more
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Functional carbon materials for high-performance Zn metal anodes
Journal of Energy Chemistry, 2022Caiwang Mao +9 more
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Anion-functionalized interfacial layer for stable Zn metal anodes
Nano Energy, 2022Hefei Fan, Min Li, Erdong Wang
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Epitaxial Deposition of Zn (002) for Stable Zinc Metal Anodes
SSRN Electronic Journal, 2022Yao Lu +5 more
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Designing vertical aligned Zn microchannels for enhanced performance of Zn metal anodes
FlatChemYu Zhang +9 more
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