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Dendrite-Suppression Electrolytes for Lithium-Metal and Lithium-Ion Batteries

机译:用于锂金属和锂离子电池的树突式抑制电解质

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Lithium (Li) dendrite formation is one of the critical challenges for rechargeable Li-metal batteries and Li-ion batteries, which has not been effectively solved by traditional methods. In this paper, we report the systematic investigation of a novel self-healing electrostatic shield (SHES) mechanism to change the Li deposition behavior by using low-concentration electrolyte additives whose redox potentials are close to that of Li~+. The SHES additive cations force Li to be deposited in the region away from protuberant tips due to their preferentially accumulation on the active sites of anode surface. Typical adsorption behavior rather than electrochemical reduction of the additive cation is observed. The existence of Cs~+ cations in the electrolytes does not change the components or structure of Li surface films, which is consistent with what the SHES mechanism predicts. The morphologies of deposited Li films on copper substrates are smooth and uniform during repeated deposition-stripping cycles and at various current densities (from 0.1 to 1.0 mA cm~(-2)) by adding only a small amount of Cs~+ additive in the electrolytes. Cs~+-additive also suppresses Li dendrite growth on carbon anode surface during overcharging, which should improve the safety of Li-ion batteries during abuse conditions. It does not affect the rate capability but improves the long-term cycling stability of Li metal anode, carbon anode and conventional Li-ion cathode materials.
机译:锂(Li)树突式形成是可充电Li金电池和锂离子电池的关键挑战之一,其尚未通过传统方法得到有效解决。在本文中,我们报告了通过使用低浓度电解质添加剂来改变Li沉积行为的新型自愈式静电屏蔽(SHES)机制的系统研究,其氧化还原电位接近Li〜+的低浓度电解质添加剂。由于它们优先积聚在阳极表面的活性位点上,因此Shes添加剂阳离子迫使Li沉积在远离突出尖端的区域中。观察到典型的吸附行为而不是添加剂阳离子的电化学降低。电解质中的Cs〜+阳离子的存在不会改变Li表面膜的组分或结构,这与Shes机构预测的一致。在铜基材上沉积的LI膜的形态在重复沉积剥离循环期间和各种电流密度(从0.1至1.0mA cm〜(-2))中的光滑和均匀,通过添加少量Cs〜+添加剂电解质。 CS〜+废弃剂还抑制了在过度充电期间碳阳极表面上的Li Dendrite生长,这应该改善滥用条件下的锂离子电池的安全性。它不会影响速率能力,但提高了Li金属阳极,碳阳极和常规锂离子阴极材料的长期循环稳定性。

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