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Marginal Magnesium Doping for High-Performance Lithium Metal Batteries

机译:高性能锂金属电池的边际镁掺杂

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摘要

Due to unparalleled theoretical capacity and operation voltage, metallic Li is considered as the most attractive candidate for lithium-ion battery anodes. However, Li metal electrodes suffer from uncontrolled dendrite growth and consequent interfacial instability, which result in an unacceptable level of performance in cycling stability and safety. Herein, it is reported that a marginal amount (1.5 at%) of magnesium (Mg) doping alters the surface properties of Li metal foil drastically in such a way that upon Li plating, a highly dense Li whisker layer is induced, instead of sharp dendrites, with enhanced interfacial stability and cycling performance. The effect of Mg doping is explained in terms of increased surface energy, which facilitates plating of Li onto the main surface over the existing whiskers. The present study offers a useful guideline for Li metal batteries, as it largely resolves the longstanding shortcoming of Li metal electrodes without significantly sacrificing their main advantages.
机译:由于无与伦比的理论容量和工作电压,金属锂被认为是锂离子电池阳极最有吸引力的候选材料。然而,锂金属电极遭受不受控制的枝晶生长和随之而来的界面不稳定性,这导致循环稳定性和安全性达到不可接受的水平。在此,据报道,少量(1.5at%)的镁(Mg)掺杂以如下方式极大地改变了锂金属箔的表面性能:在镀覆锂时,会引起高密度的锂晶须层,而不是尖锐的。树突,具有增强的界面稳定性和循环性能。 Mg掺杂的作用是通过增加表面能来解释的,这有助于将Li电镀到现有晶须上的主表面上。本研究为锂金属电池提供了有用的指导,因为它在很大程度上解决了锂金属电极的长期缺点,而又没有显着牺牲其主要优点。

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