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Multifunctional approaches for safe structural batteries

机译:安全结构电池的多功能方法

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Recent advancements in Li and Li-ion based energy storage resulted in development of novel electrode materials for higher energy density which are finding their applications in transportation. There appears to be a limitation in improvement of specific energy of the system based solely on design of material compositions for multivalent intercalation compounds. In addition, higher energy stored by the system implies need for addressing safety concerns especially when it comes to large automotive battery packs. New approaches for improvement of both energy density and safety of batteries are emerging, where multifunctionality of the materials and/or architectures is utilized. This article presents a review for such approaches from multifunctional current collectors to design of batteries capable of supporting mechanical loads and thus possessing ability to be used as a structural component.
机译:李和锂离子的能量存储最近的进步导致新型电极材料的开发,用于更高的能量密度,该材料在运输中发现其应用。 仅基于用于多价嵌入化合物的材料组合物的设计,似乎有所改善了系统的特定能量。 此外,系统存储的更高能量意味着需要应对安全问题,特别是当涉及大型汽车电池组时。 出现了改善能量密度和能量密度和安全性的新方法,其中利用了材料和/或架构的多功能性。 本文提出了从多功能集电器到设计能够支持机械负荷的电池的方法的审查,从而具有用作结构部件的能力。

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