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首页> 外文期刊>Angewandte Chemie >Dendrite-Free Nanocrystalline Zinc Electrodeposition from an Ionic Liquid Containing Nickel Triflate for Rechargeable Zn-Based Batteries
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Dendrite-Free Nanocrystalline Zinc Electrodeposition from an Ionic Liquid Containing Nickel Triflate for Rechargeable Zn-Based Batteries

机译:含三氟甲磺酸镍的离子液体对可充电锌基电池的无枝晶纳米晶锌电沉积

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摘要

Metallic zinc is a promising anode material for rechargeable Zn-based batteries. However, the dendritic growth of zinc has prevented practical applications. Herein it is demonstrated that dendrite-free zinc deposits with a nanocrystalline structure can be obtained by using nickel triflate as an additive in a zinc triflate containing ionic liquid. The formation of a thin layer of Zn-Ni alloy (eta- and gamma-phases) on the surface and in the initial stages of deposition along with the formation of an interfacial layer on the electrode strongly affect the nucleation and growth of zinc. A well-defined and uniform nanocrystalline zinc deposit with particle sizes of about 25 nm was obtained in the presence of Ni-II. Further, it is shown that the nanocrystalline Zn exhibits a high cycling stability even after 50 deposition/stripping cycles. This strategy of introducing an inorganic metal salt in ionic liquid electrolytes can be considered as an efficient way to obtain dendrite-free zinc.
机译:金属锌是用于可再充电锌基电池的有希望的阳极材料。但是,锌的树枝状生长阻碍了实际应用。在此证明,通过在含有三氟甲磺酸锌的离子液体中使用三氟甲磺酸镍作为添加剂,可以获得具有纳米晶体结构的无枝晶的锌沉积物。在表面和沉积初期,锌-镍合金薄层(η相和γ相)的形成以及电极上界面层的形成都强烈影响锌的形核和生长。在Ni-II的存在下,获得了粒度约25nm的明确且均匀的纳米晶锌沉积物。此外,显示出即使在50次沉积/剥离循环之后,纳米晶体Zn仍显示出高循环稳定性。这种在离子液体电解质中引入无机金属盐的策略可以被认为是获得无枝晶锌的有效方法。

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