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首页> 外文期刊>Nature Communications >Phase evolution in single-crystalline LiFePO4 followed by in situ scanning X-ray microscopy of a micrometre-sized battery
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Phase evolution in single-crystalline LiFePO4 followed by in situ scanning X-ray microscopy of a micrometre-sized battery

机译:单晶LiFePO 4 的相演化,然后是微米级电池的原位扫描X射线显微镜

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LiFePO4 is one of the most frequently studied positive electrode materials for lithium-ion batteries during the last years. Nevertheless, there is still an extensive debate on the mechanism of phase transformation. On the one hand this is due to the small energetic differences involved and hence the great sensitivity with respect to parameters such as size and morphology. On the other hand this is due to the lack of in situ observations with appreciable space and time resolution. Here we present scanning transmission X-ray microscopy measurements following in situ the phase boundary propagation within a LiFePO4 single crystal along the (010) orientation during electrochemical lithiation/delithiation. We follow, on a battery-relevant timescale, the evolution of a two-phase-front on a micrometre scale with a lateral resolution of 30?nm and with minutes of time resolution. The growth pattern is found to be dominated by elastic effects rather than being transport-controlled.
机译:LiFePO 4 是最近几年研究最频繁的锂离子电池正极材料之一。尽管如此,关于相变的机制仍存在广泛的争论。一方面,这是由于所涉及的能量差异小,因此对于诸如尺寸和形态的参数具有很高的敏感性。另一方面,这是由于缺乏具有可观的空间和时间分辨率的原位观测所致。在此,我们介绍了在电化学锂化/脱锂过程中,沿LiFePO 4 单晶沿(010)取向在原位沿相边界传播的扫描透射X射线显微镜测量。在与电池相关的时间尺度上,我们遵循微米级尺度上两相前沿的演变,其横向分辨率为30?nm,时间分辨率为数分钟。发现增长方式主要受弹性影响而不是受运输控制。

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