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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Selenium in nitrogen-doped microporous carbon spheres for high-performance lithium-selenium batteries
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Selenium in nitrogen-doped microporous carbon spheres for high-performance lithium-selenium batteries

机译:高性能锂硒电池中氮掺杂微孔碳球中的硒

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摘要

Selenium, which is in the same group of elements as sulphur and has a higher electrical conductivity and a comparable theoretical volumetric capacity density compared to sulphur, is a prospective candidate for use in cathode materials. Herein, we propose and realise a novel strategy: using selenium in nitrogen-doped microporous carbon spheres for Li-Se batteries. As a new cathode material, the integrated composite can ensure the complete electrochemical reaction of selenium. The abundant micropores uniformly distributed in the carbon matrix and the strong adsorptive power can effectively hold the selenium, while the synergetic effect of the nitrogen heteroatoms, graphitisation, the unoccupied mesopores, and the relatively high conductivity of selenium facilitate the quick transmission of Li ions and electrons. Li-Se batteries based on this concept show excellent electrochemical performance with a high reversible capacity of 570 mA h g(-1) over 350 cycles at 0.5C, outstanding cycling stability at a rate of 2 C over 1600 cycles without capacity loss, and remarkable rate capability.
机译:硒与硫属于同一类元素,与硫相比具有更高的电导率和可比的理论体积容量密度,是用于阴极材料的潜在候选材料。在此,我们提出并实现了一种新的策略:在硒化锂电池的氮掺杂微孔碳球中使用硒。作为一种新的阴极材料,集成的复合材料可以确保硒的完全电化学反应。碳基体中均匀分布的大量微孔和强大的吸附能力可以有效地保留硒,而氮杂原子的协同作用,石墨化作用,中空孔的空位以及硒的较高电导率有利于锂离子和锂离子的快速传输。电子。基于此概念的锂硒电池具有出色的电化学性能,在0.5C的350个循环中具有570 mA hg(-1)的高可逆容量,在1600个循环中以2 C的速率具有出色的循环稳定性而无容量损失,并且性能显着速率能力。

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