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硫化锂(Li2S)/氧化石墨烯纳米球及其碳包覆层作为高倍率长寿命锂硫电池正极材料。

Lithium Sulfide (Li2S)/Graphene Oxide Nanospheres with Conformal Carbon Coating as a High-Rate, Long-Life Cathode for Li/S Cells.

机构信息

†Department of Chemical and Biomolecular Engineering, University of California, Berkeley, California 94720, United States.

‡Environmental Energy Technologies Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, United States.

出版信息

Nano Lett. 2015 May 13;15(5):3479-86. doi: 10.1021/acs.nanolett.5b00820. Epub 2015 Apr 30.

Abstract

In recent years, lithium/sulfur (Li/S) cells have attracted great attention as a candidate for the next generation of rechargeable batteries due to their high theoretical specific energy of 2600 W·h kg(-1), which is much higher than that of Li ion cells (400-600 W·h kg(-1)). However, problems of the S cathode such as highly soluble intermediate species (polysulfides Li2Sn, n = 4-8) and the insulating nature of S cause poor cycle life and low utilization of S, which prevents the practical use of Li/S cells. Here, a high-rate and long-life Li/S cell is proposed, which has a cathode material with a core-shell nanostructure comprising Li2S nanospheres with an embedded graphene oxide (GO) sheet as a core material and a conformal carbon layer as a shell. The conformal carbon coating is easily obtained by a unique CVD coating process using a lab-designed rotating furnace without any repetitive steps. The Li2S/GO@C cathode exhibits a high initial discharge capacity of 650 mA·h g(-1) of Li2S (corresponding to the 942 mA·h g(-1) of S) and very low capacity decay rate of only 0.046% per cycle with a high Coulombic efficiency of up to 99.7% for 1500 cycles when cycled at the 2 C discharge rate.

摘要

近年来,锂/硫(Li/S)电池因其具有 2600 W·h kg(-1)的高理论比能量而备受关注,比锂离子电池(400-600 W·h kg(-1))高得多,被认为是下一代可充电电池的候选者。然而,S 正极存在的问题,如高度可溶性中间产物(多硫化物 Li2Sn,n = 4-8)和 S 的绝缘性质,导致循环寿命差和 S 利用率低,这阻碍了 Li/S 电池的实际应用。在这里,提出了一种具有核壳纳米结构的正极材料的高倍率长寿命 Li/S 电池,该正极材料由具有嵌入式氧化石墨烯(GO)片的 Li2S 纳米球作为核材料和碳层作为壳组成。采用独特的 CVD 涂层工艺,使用实验室设计的旋转炉,无需任何重复步骤,很容易获得这种核壳结构。Li2S/GO@C 正极在以 2 C 的放电速率循环 1500 次时,具有高达 99.7%的库仑效率,初始放电容量为 650 mA·h g(-1)的 Li2S(对应于 942 mA·h g(-1)的 S),且容量衰减率仅为 0.046%/循环。

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