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首页> 外文期刊>Batteries & Supercaps >(0381)Highly Efficient, Dendrite‐Free Zinc Electrodeposition in Mild Aqueous Zinc‐Ion Batteries through Indium‐Based Substrates
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(0381)Highly Efficient, Dendrite‐Free Zinc Electrodeposition in Mild Aqueous Zinc‐Ion Batteries through Indium‐Based Substrates

机译:(0381)通过基于酰化的底物,在轻度水性锌离子电池中高效,无树突的锌电沉积

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摘要

Abstract Quasi‐neutral aqueous zinc‐ion (Zn‐ion) batteries are nowadays among the most promising energy storage devices for smart‐grid applications. However, their practical use remains hindered by the low Zn electrodeposition efficiency at the negative electrode, which is especially reduced due to the parasitic evolution of gaseous hydrogen. Indium is a non‐toxic metal showing poor hydrogen evolution kinetics, but it is also very expensive. Therefore, an optimized mixture of bismuth and indium particles has been used as the substrate for the Zn electrodeposition and dissolution reaction to increase its reversibility and its efficiency in a quasi‐neutral ZnSO4 solution. This strategy not only allowed to prolong the cycle life of a full Zn‐ion cell of 10?times at 0.5?C due to the suppression of the hydrogen evolution reaction, as proved by the operando DEMS analysis, but also led to very homogeneous zinc deposits over prolonged cycling at realistic charge and current densities.
机译:如今,抽象的准中性水性锌离子(Zn -ION)电池已成为智能格里德应用程序最有前途的储能设备之一。然而,它们的实际用途仍然受到负电极下的低Zn电沉积效率的阻碍,由于气态氢的寄生发展尤其降低。鉴定是一种无毒性金属,表现出不良的氢进化动力学,但也非常昂贵。因此,优化的二晶和依赖颗粒的混合物已被用作Zn电沉积和溶解反应的底物,以提高其在准中性ZNSO4溶液中的可逆性和效率。该策略不仅允许在0.5?c时延长10次的全锌离子细胞的循环寿命,这是由于Operando Dems分析证明的,而且还导致了非常均匀的锌。以逼真的电荷和当前密度延长骑自行车的沉积。

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