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Carbon-based silicon nanohybrid anode materials for rechargeable lithium ion batteries

机译:用于可再充电锂离子电池的碳基硅纳米杂化负极材料

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摘要

Silicon has demonstrated great potential as anode materials for next-generation high-energy density rechargeable lithium ion batteries. However, its poor mechanical integrity needs to be improved to achieve the required cycling stability. Nano-structured silicon has been used to prevent the mechanical failure caused by large volume expansion of silicon. Unfortunately, pristine silicon nanostructures still suffer from quick capacity decay due to several reasons, such as formation of solid electrolyte interphase, poor electrical contact and agglomeration of nanostructures. Recently, increasing attention has been paid to exploring the possibilities of hybridization with carbonaceous nanostructures to solve these problems. In this review, the recent advances in the design of carbon-silicon nanohybrid anodes and existing challenges for the development of high-performance lithium battery anodes are briefly discussed.
机译:硅已显示出作为下一代高能量密度可充电锂离子电池负极材料的巨大潜力。但是,需要改善其较差的机械完整性以获得所需的循环稳定性。纳米结构的硅已用于防止由于硅的大量膨胀而引起的机械故障。不幸的是,由于多种原因,原始硅纳米结构仍然遭受容量快速衰减的影响,例如形成固态电解质相间,不良的电接触和纳米结构的团聚。最近,人们越来越重视探索与碳纳米结构杂交以解决这些问题的可能性。在这篇综述中,简要讨论了碳硅纳米混合阳极设计的最新进展以及高性能锂电池阳极开发所面临的挑战。

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