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Tandem plasma reactions for Sn/C composites with tunable structure and high reversible lithium storage capacity

机译:具有可调结构和高可逆锂存储能力的Sn / C复合材料的串联等离子体反应

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摘要

The Sn/C nanocomposites are of great interest as high capacity anode materials for lithium ion batteries (LIBs). In this paper, we employ a tandem plasma reaction method for controlled preparation of Sn/C binary composites. The Sn and C components are generated by magnetron sputtering and plasma decomposition of CH_4 in two tandem plasma zones, respectively. The obtained Sn/C composites are composed of ultrafine Sn particles homogeneously embedded in carbon matrix, which exhibit very high reversible lithium storage capacity. The tandem plasma reaction method offers great versatility in controlling the Sn/C ratio and the Sn particle size, allowing a systematic study on the relationship between the structural parameters and the electrode performance. The reversible anode capacity is found to be strongly affected by the Sn particle size while it shows a much weaker correlation with the carbon coating layer.
机译:Sn / C纳米复合材料作为锂离子电池(LIB)的高容量阳极材料备受关注。在本文中,我们采用串联等离子体反应方法可控地制备Sn / C二元复合材料。 Sn和C组分分别通过磁控溅射和CH_4在两个串联等离子体区中的等离子体分解产生。所得的Sn / C复合材料由均匀嵌入碳基体中的超细Sn颗粒组成,具有极高的可逆锂存储能力。串联等离子体反应方法在控制Sn / C比和Sn粒径方面具有很大的通用性,可以对结构参数与电极性能之间的关系进行系统的研究。发现可逆阳极容量受Sn粒径的强烈影响,而与碳涂层的相关性却弱得多。

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