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Toward Improving the Areal Energy Density of Lithium–Sulfur Batteries with Ultramicroporous Carbon–Sulfur Composite Electrodes

机译:以超细碳 - 硫复合电极提高锂 - 硫电池的面积能密度

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摘要

> Sulfur possesses high specific capacity (1672?mA?h?g ?1 ) and high specific energy (2600?Wh?kg ?1 ), which makes it attractive as a cathode material for lithium–sulfur batteries. However, the areal energy density of sulfur electrodes is usually low due to an excess amount of inactive materials, mostly carbon, in the electrode composite. Typically, the electrode layers must be thin to achieve good specific capacity and cyclic stability. This further reduces the areal capacities, and it is challenging to design high areal density sulfur electrodes. Herein, the possibility of achieving high areal energy density by using ultramicroporous carbon–sulfur (UMC‐S) composite electrodes is investigated. For this purpose, the weight of sulfur per area is systematically varied by varying the amount of UMC‐S, and its electrochemical performance with respect to current density, cycling voltage window, electrolyte amount, and effect of temperature on cycling is investigated. A sulfur loading of up to 9.7?mg?cm ?2 and areal capacities above 4.5?mAh?cm ?2 are attained. The results indicate that a high areal energy density can be achieved with UMC‐S electrodes, however, at lower current rates. Higher current rates can be achieved by reducing the particle size and by improving the intrinsic electronic conductivity of the UMC host.
机译: <第XML:ID =“ENTE201900183-SEC-0001”> > 硫磺具有高特定容量(1672?ma?H?g ?1 )和高能量(2600?Wh?kg ?1 ),这使得它作为锂 - 硫磺电池的阴极材料具有吸引力。然而,在电极复合材料中,由于过量的惰性材料,大部分碳,硫电极的面积能密度通常是低的。通常,电极层必须薄,以实现良好的特定容量和循环稳定性。这进一步降低了面积容量,设计高面密度硫电极是挑战性的。这里,研究了通过使用超微孔碳 - 硫(UMC-S)复合电极实现高面积能密度的可能性。为此目的,通过改变UMC-S的量,并研究了相对于电流密度,循环电压窗口,电解质量和温度对循环的影响的电化学性能来系统地改变硫的重量。硫加载高达9.7?mg?cm ?2 4.5以上的面积容量?Mah?cm ?2 获得。结果表明,通过UMC-S电极可以实现高面积能密度,然而,在较低的电流速率下可以实现。通过降低粒度和通过提高UMC主体的内在电子电导率,可以实现更高的电流速率。

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