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在氮掺杂碳复合材料的电活性位点上强烈的锂多硫化物化学吸附,用于高性能锂硫电池正极。

Strong lithium polysulfide chemisorption on electroactive sites of nitrogen-doped carbon composites for high-performance lithium-sulfur battery cathodes.

机构信息

Department of Mechanical and Nuclear Engineering, The Pennsylvania State University, University Park, PA 16802 (USA).

出版信息

Angew Chem Int Ed Engl. 2015 Mar 27;54(14):4325-9. doi: 10.1002/anie.201411109. Epub 2015 Feb 6.

Abstract

Despite the high theoretical capacity of lithium-sulfur batteries, their practical applications are severely hindered by a fast capacity decay, stemming from the dissolution and diffusion of lithium polysulfides in the electrolyte. A novel functional carbon composite (carbon-nanotube-interpenetrated mesoporous nitrogen-doped carbon spheres, MNCS/CNT), which can strongly adsorb lithium polysulfides, is now reported to act as a sulfur host. The nitrogen functional groups of this composite enable the effective trapping of lithium polysulfides on electroactive sites within the cathode, leading to a much improved electrochemical performance (1200 mAh g(-1) after 200 cycles). The enhancement in adsorption can be attributed to the chemical bonding of lithium ions by nitrogen functional groups in the MNCS/CNT framework. Furthermore, the micrometer-sized spherical structure of the material yields a high areal capacity (ca. 6 mAh cm(-2)) with a high sulfur loading of approximately 5 mg cm(-2), which is ideal for practical applications of the lithium-sulfur batteries.

摘要

尽管锂硫电池具有很高的理论容量,但由于其在电解液中溶解和扩散,其实际应用受到严重阻碍。现在,有报道称一种新型功能碳复合材料(碳纳米管互穿介孔氮掺杂碳球,MNCS/CNT)可以作为硫的宿主,强烈吸附锂多硫化物。该复合材料中的氮官能团可以有效地将锂多硫化物捕获在阴极的活性位点上,从而显著改善电化学性能(200 次循环后达到 1200 mAh g(-1))。吸附的增强归因于 MNCS/CNT 骨架中氮官能团与锂离子的化学结合。此外,该材料的微米级球形结构具有较高的面积容量(约 6 mAh cm(-2))和较高的硫负载量(约 5 mg cm(-2)),非常适合锂硫电池的实际应用。

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