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Dependence of the lithiation/delithiation potentials of silicon microwire anodes on their state of charge and sizes

机译:硅片微针阳极锂电池依赖性依赖于它们的充电状态和尺寸

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Cycle life and cycle stability are the crucial parameters when talking about batteries. The cycle life is affected when the operational voltage range is not correctly selected. In Si anodes, their intrinsic voltage limits are given by the phase transformation potentials. The voltage limits depend not only on external parameters like the voltage sweep rate, but mostly on internal parameters like the dimensions of the Si anode, and parameters of state like the state of charge. This is investigated in the present study, using Si microwires with different thicknesses and lengths. Additionally, the wires have been pre-lithiated to specific capacity limits. The analysis has been performed through cyclic voltammetry. It has been found that while short wires exhibit a lithiation limit at 50 % state of charge (SOC), the diffusion limitations are larger in long wires, which can be easily lithiated to a higher state of charge. The study showed that the optimal wire dimension has to be found to achieve better and stable cycling performance.
机译:循环寿命和循环稳定性是谈论电池时的关键参数。当未正确选择操作电压范围时,循环寿命受到影响。在SI阳极中,它们的内在电压限制由相变电位给出。电压限制不仅取决于电压扫描率的外部参数,而且大多在类似于Si阳极的尺寸的内部参数,以及像充电状态的状态的参数。这在本研究中研究了具有不同厚度和长度的Si微线。另外,电线已经预先锂化为特定的容量限制。通过循环伏安法进行了分析。已经发现,虽然短线显示在50%充电状态(SOC)处具有锂电限制,但是长线的扩散限制较大,这可以容易地锂电至更高的充电状态。该研究表明,必须找到最佳的线尺寸来实现更好稳定的循环性能。

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