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一步法合成硫掺杂石墨烯锂硫电池正极材料。

One-step synthesis of a sulfur-impregnated graphene cathode for lithium-sulfur batteries.

机构信息

Advanced Batteries Research Center, Korea Electronics Technology Institute, 68 Yatap-dong, Bundang-gu, Seongnam 463-816, Republic of Korea.

出版信息

Phys Chem Chem Phys. 2012 May 21;14(19):6796-804. doi: 10.1039/c2cp40727b. Epub 2012 Apr 5.

Abstract

A practical route is introduced for synthesizing a sulfur-impregnated graphene composite as a promising cathode material for lithium-sulfur batteries. Sulfur particles with a size of a few microns are successfully grown in the interior spaces between randomly dispersed graphene sheets through a heterogeneous crystal growth mechanism. The proposed route not only enables the control of the particle size of active sulfur but also affords quantitative yields of composite powder in large quantities. We investigate the potential use of the sulfur-impregnated graphene composite as a cathode material owing to its advantages of confining active sulfur, preventing the dissolution of soluble polysulfides, and providing sufficient electrical conduction. A high discharge capacity of 1237 mA h g(-1) during the first cycle and a good cyclic retention of 67% after 50 cycles are attained in a voltage range of 1.8-2.6 V vs. Li/Li(+). These results emphasize the importance of tailoring cathode materials for improving the electrochemical properties of lithium-sulfur batteries. Our results provide a basis for further investigations on advanced lithium batteries.

摘要

介绍了一种实用的方法来合成硫浸渍石墨烯复合材料,作为一种很有前途的锂硫电池阴极材料。通过非均相晶体生长机制,成功地在随机分散的石墨烯片之间的内部空间中生长出几微米大小的硫颗粒。所提出的方法不仅能够控制活性硫的颗粒尺寸,而且还能够以大量的定量产率获得复合粉末。我们研究了硫浸渍石墨烯复合材料作为阴极材料的潜在用途,因为它具有限制活性硫、防止可溶性多硫化物溶解以及提供足够的电传导的优点。在 1.8-2.6 V 相对于 Li/Li(+)的电压范围内,首次循环的放电容量达到 1237 mA h g(-1),50 次循环后的循环保持率为 67%。这些结果强调了针对改进锂硫电池的电化学性能来定制阴极材料的重要性。我们的结果为进一步研究先进的锂电池提供了基础。

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