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Recent Developments of Zinc-Ion Batteries
2021Ever since the rejuvenation of the Zn-MnO2 system in mildly acidic electrolyte medium in 2012, the research on zinc-ion batteries (ZIBs) has seen a continuous growth because of their economic, safe, and environmental advantages. The possibility of the divalent charge in Zn2+ ion and the high theoretical capacity of the Zn anode contribute to high ...
Jaekook Kim +4 more
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Influence of Water on Gel Electrolytes for Zinc‐Ion Batteries
Chemistry – An Asian Journal, 2023AbstractGel electrolytes are being intensively explored for aqueous rechargeable zinc‐ion batteries, especially towards high performance and multi‐functionalities. Water plays a central role on the fundamental properties, interface reaction/interaction, and performance of the gel‐type zinc electrolyte.
Xiangjie Liu +6 more
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Flexible all-in-one zinc-ion batteries
Nanoscale, 2019Flexible all-in-one ZIBs exhibit excellent physical flexibility and stable electrochemical performance under different mechanical deformations.
Yan Zhang +5 more
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Undesired Reactions in Aqueous Rechargeable Zinc Ion Batteries
ACS Energy Letters, 2021Rechargeable zinc-ion batteries (RZIBs) utilizing aqueous electrolytes can offer high safety, low cost, and fast charge/discharge ratings for large-scale energy storage.
Vivek Verma +3 more
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An anode-free zinc-ion battery
C&EN Global Enterprise, 2021For rechargeable batteries, zinc chemistry presents a low-cost and potentially safer option than lithium and sodium.
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Covalent Organic Frameworks in Aqueous Zinc‐Ion Batteries
Chemistry – A European Journal, 2023AbstractThe development and utilization of green renewable energy are imperative with the aggravation of environmental pollution and energy crisis. In recent years, the exploration of electrochemical energy storage systems has gradually become a research hotspot in energy.
Lihua Li +4 more
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Upcycling of phosphogypsum waste for efficient zinc-ion batteries
Journal of Energy Chemistry, 2022Zinc metal is a promising anode material for next-generation aqueous batteries, but its practical application is limited by the formation of zinc dendrite. To prevent zinc dendrite growth, various Zn 2+ -conducting but water-isolating solid-electrolyte interphase (SEI) films have been developed, however, the required high-purity chemical materials are ...
Wang, Huanwen +11 more
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Layered vanadium oxides with proton and zinc ion insertion for zinc ion batteries
Electrochimica Acta, 2019Abstract Rechargeable zinc ion battery is considered as a very promising energy storage system due to its high safety, low cost, and environmentally friendliness. Vanadium oxides with high capacity, good rate performance, and excellent cycle life are important cathode materials for zinc ion batteries.
Wenbao Liu +8 more
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Recently advances in flexible zinc ion batteries
Journal of Semiconductors, 2021Flexible batteries are key component of wearable electronic devices. Based on the requirements of medical and primary safety of wearable energy storage devices, rechargeable aqueous zinc ion batteries (ZIBs) are promising portable candidates in virtue of its intrinsic safety, abundant storage and low cost. However, many inherent challenges have greatly
Chuan Li, Pei Li, Shuo Yang, Chunyi Zhi
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Visualising and Characterising Zinc Ion Transport for Zinc Ion Batteries By Fluorescence Microscopy
ECS Meeting Abstracts, 2019Zinc has been regarded as a promising anode material for aqueous batteries in view of its advantages including high specific capacity, abundance and intrinsic safety. Aqueous zinc ion batteries have attracted growing attention as a potential alternative to lithium ion batteries, especially for medium and large-scale energy storage.
Binbin Chen +2 more
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