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Mechanical Property Evolution of Silicon Composite Electrodes Studied by Environmental Nanoindentation

机译:环境纳米压痕研究硅复合电极的力学性能演变

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Mechanical degradation is largely responsible for the short cycle life of silicon (Si)-based electrodes for future lithium-ion batteries. An improved fundamental understanding of the mechanical behavior of Si electrodes, which evolves, as demonstrated in this paper, with the state of charge (SOC) and the cycle number, is a prerequisite for overcoming mechanical degradation and designing high capacity and durable Si-based electrodes. In this study, Young's modulus (E) and hardness (H) of Si composite electrodes at different SOCs and after different cycle numbers are measured by nanoindentation under both dry and wet (liquid electrolyte) conditions. Unlike electrodes made of Si alone, E and H values of Si composite electrodes increase with increasing Li concentration. The composite electrodes under wet conditions are softer than that under dry conditions. Both E and H decrease with the cycle number. These findings highlight the effects of porosity, liquid environment, and degradation on the mechanical behavior of composite electrodes. The methods and results of this study on the mechanical property evolution of Si/polyvinylidene fluoride electrodes form a basis for exploring more effective binders for Si-based electrodes. Furthermore, the evolving nature of the mechanical behavior of composite electrodes should be taken into consideration in future modeling efforts of porous composite electrodes.
机译:机械性能下降是造成未来锂离子电池硅(Si)电极寿命短的主要原因。如本文所述,随着电荷状态(SOC)和循环次数的发展,对硅电极机械性能的基本了解得到了发展,这是克服机械性能退化和设计高容量和耐用硅基的先决条件电极。在这项研究中,在干燥和湿润(液体电解质)条件下,通过纳米压痕法测量了在不同SOC下和不同循环次数后的Si复合电极的杨氏模量(E)和硬度(H)。与单独由Si制成的电极不同,Si复合电极的E和H值随着Li浓度的增加而增加。潮湿条件下的复合电极比干燥条件下的软。 E和H都随循环数减少。这些发现突出了孔隙率,液体环境和降解对复合电极机械性能的影响。硅/聚偏二氟乙烯电极机械性能演变的研究方法和结果为探索更有效的硅基电极粘合剂奠定了基础。此外,在将来对多孔复合电极的建模工作中,应考虑复合电极机械性能的演变性质。

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