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Elegant design of electrode and electrode/electrolyte interface in lithium-ion batteries by atomic layer deposition

机译:通过原子层沉积法对锂离子电池中的电极和电极/电解质界面进行优雅的设计

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摘要

Lithium-ion batteries (LIBs) are very promising power supply systems for a variety of applications, such as electric vehicles, plug-in hybrid electric vehicles, grid energy storage, and microelectronics. However, to realize these practical applications, many challenges need to be addressed in LIBs, such as power and energy density, cycling lifetime, safety, and cost. Atomic layer deposition (ALD) is emerging as a powerful technique for solving these problems due to its exclusive advantages over other film deposition counterparts. In this review, we summarize the state-of-the-art progresses of employing ALD to design novel nanostructured electrode materials and solid-state electrolytes and to tailor electrode/electrolyte interface by surface coatings in order to prevent unfavorable side reactions and achieve optimal performance of the electrode. Insights into the future research and development of the ALD technique for LIB applications are also discussed. We expect that this review article will provide resourceful information to researchers in both fields of LIBs and ALD and also will stimulate more insightful studies of using ALD for the development of next-generation LIBs.
机译:锂离子电池(LIB)是用于各种应用的非常有前途的电源系统,例如电动汽车,插电式混合动力电动汽车,电网储能和微电子产品。但是,要实现这些实际应用,LIB需要解决许多挑战,例如功率和能量密度,循环寿命,安全性和成本。原子层沉积(ALD)相对于其他成膜技术具有独特的优势,正成为解决这些问题的有力技术。在这篇综述中,我们总结了利用ALD设计新型纳米结构电极材料和固态电解质以及通过表面涂层调整电极/电解质界面以防止不良副反应并实现最佳性能的最新进展电极的还讨论了对LIB应用的ALD技术的未来研究和开发的见解。我们希望这篇评论文章将为LIB和ALD领域的研究人员提供有用的信息,还将激发更多关于使用ALD来开发下一代LIB的深入研究。

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