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首页> 外文期刊>Composites >Silicon nanowire reinforced by single-walled carbon nanotube and its applications to anti-pulverization electrode in lithium ion battery
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Silicon nanowire reinforced by single-walled carbon nanotube and its applications to anti-pulverization electrode in lithium ion battery

机译:单壁碳纳米管增强的硅纳米线及其在锂离子电池抗粉化电极中的应用

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Lithium (Li) ion batteries are in high demand by most of portable electronic devices. Silicon (Si), owing to its large theoretical energy density (4200 mAhg~(-1)), is a promising candidate for anode material. However, loss of electrical contact caused by the pulverization that comes from the enormous volume changes during charging and discharging process hinders its application. The aim of the current work is to elucidate the possibility of using carbon nanotubes (CNTs) for the Si reinforcement to minimize the volume expansions. Firstly, ab initio simulations demonstrate that the Li ions can permeate CNT through the tube end freely under the normal charge voltage (~3.6 V). Then, molecular dynamics simulations are adopted to analyze the strength improvement of silicon nanowires (SiNWs) encapsulated by CNT. The compression simulations of SiNW were performed to reveal the expansion processes during Li ion insertion into the electrode. The results show that the smaller the SiNW is, the better the reinforcing effect is. A phase transition appears in the SiNW encapsulated by CNT during compression, which makes SiNW more ductile. The simulation results provide an effective way for the SiNW reinforcement in the Li ion battery.
机译:大多数便携式电子设备对锂(Li)离子电池的需求很高。硅(Si)由于其大的理论能量密度(4200 mAhg〜(-1))而成为阳极材料的有希望的候选者。然而,由于在充电和放电过程中由于巨大的体积变化而引起的由粉碎引起的电接触的损失阻碍了其应用。当前工作的目的是阐明使用碳纳米管(CNT)进行Si增强以最小化体积膨胀的可能性。首先,从头算模拟表明,锂离子可以在正常充电电压(约3.6 V)下自由地通过管端渗透CNT。然后,通过分子动力学模拟分析了碳纳米管包裹的硅纳米线(SiNWs)的强度提高。进行SiNW的压缩模拟以揭示锂离子插入电极期间的膨胀过程。结果表明,SiNW越小,增强效果越好。在压缩过程中,CNT包裹的SiNW中会出现相变,这使SiNW更具延展性。仿真结果为锂离子电池中SiNW的增强提供了有效的途径。

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