“Pompon” graphene as a new promising anode for LIBs

O. Potapenko, K. Vavilon, V. Zinin, H. Potapenko, Zhang Qian, Shengwen Zhong
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Abstract

The "pompon" graphene was obtained by the new modified controlled detonation gas synthesis tested as an anode of LIBs. Processing of Raman spectra by changing the position of the G-band shows the presence of a mixture of 2, 3 and 4-layer graphene structures. The results of the surface area measurement by the BET method have been shown the limited availability of the "pompons" for the penetration of lithium ions between its layers. Subsequent thermomechanical activation leads to partial "delamination” of the pompon and the production of both separate and 2-layer sheets of graphene, which is reflected in a sharp increase in its specific surface area. The specific capacity of graphene, as an anode of LIBs, increases in the range M0 < M20 < M40 and reaches of 500 mAh•g-1 at a current density of 37.2 mA•g-1 for the best M40 sample. The obtained values of specific capacity are 1.5 times higher than similar values for graphite-based anodes.
“绒球”石墨烯作为锂离子电池极具前景的新阳极
采用新型改性可控爆轰气合成方法制备了“绒球”石墨烯,并对其作为锂离子电池的阳极进行了测试。通过改变g带的位置对拉曼光谱进行处理,发现存在2层、3层和4层石墨烯结构的混合物。用BET方法测量表面积的结果表明,“绒球”对于锂离子在其层之间的渗透是有限的。随后的热机械活化导致绒球部分“分层”,并产生分离和双层石墨烯片,这反映在其比表面积的急剧增加上。石墨烯作为锂离子电池的阳极,其比容量在M0 < M20 < M40的范围内增加,在电流密度为37.2 mA•g-1时,最佳M40样品的比容量达到500 mAh•g-1。所得比容量值是石墨基阳极比容量值的1.5倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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