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Walnut-structure Si–G/C materials with high coulombic efficiency for long-life lithium ion batteries

机译:具有库伦效率的核桃结构Si–G / C材料,适用于长寿命锂离子电池

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Nano-sized silicon is a potential high energy density anode material for lithium ion batteries. However, the practical use of a nano-Si anode is still challenging due to its low coulombic efficiency, poor scalability and cycling stability. Herein, a Si/graphite/carbon (Si–G/C) composite with a core–shell structure was fabricated by a facile two-step chemical process, stirring–evaporating followed by heat treatment. The composite structure consists of a graphite core, coated first by silicon and then amorphous carbon, which was decomposed by pitch. The as-prepared Si–G/C composite anode demonstrates a first cycle capacity of about 650 mA h g ~(?1) , over 90% coulombic efficiency, and high capacity retention of 96.7% after 50 cycles. When paired with a commercial NCA cathode, superior cycling stability with more than 81% capacity retention was achieved for 1200 cycles. These results demonstrate that such a core–shell Si–G/C composite is a promising anode material for high energy Li-ion batteries.
机译:纳米级硅是锂离子电池潜在的高能量密度阳极材料。然而,由于其低库伦效率,差的可扩展性和循环稳定性,纳米Si阳极的实际使用仍然具有挑战性。在这里,通过简单的两步化学过程,搅拌-蒸发,然后进行热处理,制备了具有核-壳结构的Si /石墨/碳(Si–G / C)复合材料。该复合结构由石墨芯组成,首先被硅覆盖,然后被非晶碳覆盖,然后通过沥青将其分解。所制备的Si-G / C复合阳极显示出约650 mA h g〜(?1)的第一循环容量,超过90%的库仑效率和在50个循环后的96.7%的高容量保持率。当与商用NCA阴极配对时,在1200次循环中可实现优异的循环稳定性和超过81%的容量保持率。这些结果表明,这种核-壳Si-G / C复合材料是用于高能锂离子电池的有希望的负极材料。

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