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电极的革命:可充电锂硫电池的最新进展。

A revolution in electrodes: recent progress in rechargeable lithium-sulfur batteries.

机构信息

State Key Laboratory of Molecular, Engineering of Polymers, Department of Macromolecular Science and Laboratory of Advanced Materials, Fudan University, Shanghai, 200438, China.

出版信息

Small. 2015 Apr;11(13):1488-511. doi: 10.1002/smll.201402354. Epub 2014 Dec 15.

Abstract

As a promising candidate for future batteries, the lithium-sulfur battery is gaining increasing interest due to its high capacity and energy density. However, over the years, lithium-sulfur batteries have been plagued by fading capacities and the low Coulombic efficiency derived from its unique electrochemical behavior, which involves solid-liquid transition reactions. Moreover, lithium-sulfur batteries employ metallic lithium as the anode, which engenders safety vulnerability of the battery. The electrodes play a pivotal role in the performance of lithium-sulfur batteries. A leap forward in progress of lithium-sulfur batteries is always accompanied by a revolution in the electrode technology. In this review, recent progress in rechargeable lithium-sulfur batteries is summarized in accordance with the evolution of the electrodes, including the diversified cathode design and burgeoning metallic-lithium-free anodes. Although the way toward application has still many challenges associated, recent progress in lithium-sulfur battery technology still paints an encouraging picture of a revolution in rechargeable batteries.

摘要

作为未来电池的有前途的候选者,由于其高容量和能量密度,锂硫电池越来越受到关注。然而,多年来,锂硫电池一直受到容量衰减和库仑效率低的困扰,这是由于其独特的电化学行为,涉及固-液转变反应。此外,锂硫电池采用金属锂作为阳极,这会使电池存在安全隐患。电极在锂硫电池的性能中起着关键作用。锂硫电池的进展总是伴随着电极技术的革命。在这篇综述中,根据电极的演变,包括多样化的阴极设计和新兴的无金属锂阳极,总结了可充电锂硫电池的最新进展。尽管在应用过程中仍存在许多挑战,但锂硫电池技术的最新进展仍为可充电电池的革命描绘了一幅令人鼓舞的图景。

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