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Dendrite Suppression by a Polymer Coating: A Coarse-Grained Molecular Study

机译:聚合物涂层抑制枝晶生长:粗粒化分子研究

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摘要

A major hurdle to the successful deployment of high-energy-density lithium metal based batteries is dendrite growth during battery cycling, which raises safety and cycle life concerns. Coating the Li metal anode with a soft polymer layer has been previously shown to be effective in suppressing dendrite growth, leading to uniform lithium deposition even at high current densities. A 3D coarse-grained molecular model to study the mechanism of dendrite suppression is presented. It is found that the most effective coatings delay or even prevent dendrites from penetrating the polymer layer during deposition. The optimal deposition can be achieved by jointly tuning the polymer stiffness and relaxation time. Higher polymer dielectric permittivity and coating thickness are also effective, but the deposition rate and, therefore, the charging current density is reduced. These findings provide the basis for rational design of soft polymer coatings for stable lithium deposition.
机译:成功部署高能量密度锂金属基电池的主要障碍是电池循环过程中枝晶的生长,这增加了对安全性和循环寿命的关注。先前已证明,用柔软的聚合物层涂覆Li金属阳极可有效抑制枝晶生长,即使在高电流密度下也可实现均匀的锂沉积。提出了研究枝晶抑制机理的3D粗粒分子模型。发现最有效的涂层延迟或什至防止树枝状晶体在沉积过程中渗透聚合物层。可以通过共同调节聚合物的刚度和弛豫时间来实现最佳沉积。较高的聚合物介电常数和涂层厚度也是有效的,但是沉积速率降低,因此充电电流密度降低。这些发现为合理设计软聚合物涂层以稳定锂沉积提供了基础。

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