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Minimizing the Electrolyte Volume in Li–S Batteries: A Step Forward to High Gravimetric Energy Density

机译:最小化Li-S电池中的电解质体积:迈向高重力能量密度的一步

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摘要

Sulfur electrodes confined in an inert carbon matrix show practical limitations and concerns related to low cathode density. As a result, these electrodes require a large amount of electrolyte, normally three times more than the volume used in commercial Li-ion batteries. Herein, a high-energy and high-performance lithium-sulfur battery concept, designed to achieve high practical capacity with minimum volume of electrolyte is proposed. It is based on deposition of polysulfide species on a self-standing and highly conductive carbon nanofiber network, thus eliminating the need for a binder and current collector, resulting in high active material loading. The fiber network has a functionalized surface with the presence of polar oxygen groups, with the aim to prevent polysulfide migration to the lithium anode during the electrochemical process, by the formation of S-O species. Owing to the high sulfur loading (6 mg cm(-2)) and a reduced free volume of the sulfide/fiber electrode, the Li-S cell is designed to work with as little as 10 mu L cm(-2) of electrolyte. With this design the cell has a high energy density of 450 Wh kg(-1), a lifetime of more than 400 cycles, and the possibility of low cost, by use of abundant and eco-friendly materials.
机译:限制在惰性碳基质中的硫电极显示出实际的局限性和与低阴极密度有关的担忧。结果,这些电极需要大量的电解质,通常是商用锂离子电池所用体积的三倍。在此,提出了一种高能量,高性能的锂硫电池概念,旨在以最小的电解质体积实现高实用容量。它基于多硫化物物种在自立且高导电性的碳纳米纤维网络上的沉积,因此无需粘合剂和集电器,从而导致高活性材料负载。纤维网络具有带有极性氧基团的功能化表面,目的是通过形成S-O物质来防止多硫化物在电化学过程中迁移到锂阳极。由于高硫负荷(6 mg cm(-2))和减少的硫化物/纤维电极的自由体积,Li-S电池设计为仅使用10μL cm(-2)的电解质即可工作。通过这种设计,通过使用丰富且环保的材料,该电池具有450 Wh kg(-1)的高能量密度,超过400个循环的寿命以及低成本的可能性。

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