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用于高性能可充电电池阳极的氧化铜/石墨复合材料的合成

Synthesis of Copper Oxide/Graphite Composite for High-Performance Rechargeable Battery Anode.

作者信息

Cho Sanghun, Ahn Yong-Keon, Yin Zhenxing, You Duck-Jae, Kim Hyunjin, Piao Yuanzhe, Yoo Jeeyoung, Kim Youn Sang

机构信息

Program in Nano Science and Technology, Graduate School of Convergence Science and Technology, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul, 08826, Republic of Korea.

Advanced Institutes of Convergence Technology, 145 Gwang gyo-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16229, Republic of Korea.

出版信息

Chemistry. 2017 Aug 25;23(48):11629-11635. doi: 10.1002/chem.201701931. Epub 2017 Aug 3.

DOI:10.1002/chem.201701931
PMID:28653431
Abstract

A novel copper oxide/graphite composite (GCuO) anode with high capacity and long cycle stability is proposed. A simple, one-step synthesis method is used to prepare the GCuO, through heat treatment of the Cu ion complex and pristine graphite. The gases generated during thermal decomposition of the Cu ion complex (H and CO ) induce interlayer expansion of the graphite planes, which assists effective ion intercalation. Copper oxide is formed simultaneously as a high-capacity anode material through thermal reduction of the Cu ion complex. Material analyses reveal the formation of Cu oxide nanoparticles and the expansion of the gaps between the graphite layers from 0.34 to 0.40 nm, which is enough to alleviate layer stress for reversible ion intercalation for Li or Na batteries. The GCuO cell exhibits excellent Li-ion battery half-cell performance, with a capacity of 532 mAh g at 0.2 C (C-rate) and capacity retention of 83 % after 250 cycles. Moreover, the LiFePO /GCuO full cell is fabricated to verify the high performance of GCuO in practical applications. This cell has a capacity of 70 mAh g and a coulombic efficiency of 99 %. The GCuO composite is therefore a promising candidate for use as an anode material in advanced Li- or Na-ion batteries.

摘要

提出了一种具有高容量和长循环稳定性的新型氧化铜/石墨复合材料(GCuO)阳极。采用简单的一步合成方法,通过对铜离子络合物和原始石墨进行热处理来制备GCuO。铜离子络合物热分解过程中产生的气体(H和CO)促使石墨平面的层间膨胀,这有助于有效的离子嵌入。同时,通过铜离子络合物的热还原形成氧化铜作为高容量阳极材料。材料分析表明形成了氧化铜纳米颗粒,并且石墨层之间的间隙从0.34 nm扩展到0.40 nm,这足以缓解层间应力,以实现锂或钠电池的可逆离子嵌入。GCuO电池表现出优异的锂离子电池半电池性能,在0.2 C(倍率)下容量为532 mAh g,250次循环后容量保持率为83%。此外,制备了LiFePO /GCuO全电池以验证GCuO在实际应用中的高性能。该电池容量为70 mAh g,库仑效率为99%。因此,GCuO复合材料是用作先进锂或钠离子电池阳极材料的有前途的候选材料。

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引用本文的文献

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Spray-Printed and Self-Assembled Honeycomb Electrodes of Silicon-Decorated Carbon Nanofibers for Li-Ion Batteries.用于锂离子电池的硅修饰碳纳米纤维的喷雾印刷和自组装蜂窝状电极。
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