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A low-cost silicon-graphite anode made from recycled graphite of spent lithium-ion batteries

机译:由锂离子电池的再生石墨制成的低成本硅 - 石墨阳极

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Recycling graphite from spent lithium-ion batteries has substantial significance in protection of environment as well as in growth of economic. Silicon-graphite composite materials have been extensively studied and expected to replace graphite in commercial lithium-ion batteries, but it is still difficult to reduce the volume expansion of silicon. In this paper, we find that spent graphite is an ideal choice for low cost production of high-performance silicon-graphite composite, because the treated spent graphite (T-SGT) presents a porous structure which can be well combined with silicon and effectively relieve the volume expansion. The carbon coated silicon-treated spent graphite (T-SGT/Si@C) anode exhibits good cycling performance (92.47% capacity retention) over 300 cycles and good rate property (434.1 mAh g(-1) at a current density of 500 mA g(-1)), much better than carbon coated silicon-commercial graphite (CGT/Si@C).
机译:从废旧锂离子电池中回收石墨对环境保护和经济增长具有重要意义。硅-石墨复合材料已被广泛研究,有望取代石墨用于商用锂离子电池,但仍难以降低硅的体积膨胀。在本文中,我们发现废石墨是低成本生产高性能硅-石墨复合材料的理想选择,因为经过处理的废石墨(T-SGT)呈现出多孔结构,可以与硅很好地结合,并有效地缓解体积膨胀。碳包覆硅处理的废石墨(T-SGT/Si@C)阳极在300次循环中表现出良好的循环性能(92.47%的容量保持率)和良好的速率性能(在500 mA g(-1)的电流密度下为434.1 mAh g(-1)),远优于碳包覆硅商业石墨(CGT)/Si@C).

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