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Methods to improve lithium metal anode for Li-S batteries

机译:锂-硫电池锂金属负极的改进方法

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Lithium-sulfur (Li-S) battery has received a lot of attention because it is characterized by high theoretical energy density (2600 Wh / kg) and low cost. Though many works on the "shuttle effect" of polysulfide have been investigated, lithium metal anode is a more challenging problem, which leads to a short life, low coulombic efficiency and safety issues related to dendrites. As a result, the amelioration of lithium metal anode is an important means to improve the performance of lithium sulfur battery. In this paper, the improvement methods on lithium metal anode for lithium sulfur batteries, including adding electrolyte additives, using solid and/or gel polymer electrolyte, modifying separators, applying a protective coating, and providing host materials for lithium deposition, are mainly reviewed. In addition, some challenging problems and the further promising directions are also pointed out for future research and development on lithium metal for Li-S battery.
机译:锂硫(Li-S)电池以其高理论能量密度(2600 Wh / kg)和低成本为特征,因此备受关注。尽管已经对多硫化物的“穿梭效应”进行了许多研究,但锂金属阳极是一个更具挑战性的问题,导致寿命短,库伦效率低和与树枝状晶体有关的安全性问题。结果,锂金属负极的改善是提高锂硫电池性能的重要手段。本文主要综述了锂硫电池锂金属负极的改进方法,包括添加电解质添加剂,使用固体和/或凝胶聚合物电解质,修饰隔板,施加保护性涂层以及为锂沉积提供基质材料。此外,还提出了一些挑战性的问题和进一步有希望的方向,用于锂-硫电池锂金属的未来研究和开发。

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