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In operando tracking phase transformation evolution of lithium iron phosphate with hard X-ray microscopy

机译:硬X射线显微镜操作中跟踪磷酸铁锂的相变演变

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摘要

The delithiation reaction in lithium ion batteries is often accompanied by an electrochemically driven phase transformation process. Tracking the phase transformation process at nanoscale resolution during battery operation provides invaluable information for tailoring the kinetic barrier to optimize the physical and electrochemical properties of battery materials. Here, using hard X-ray microscopy—which offers nanoscale resolution and deep penetration of the material, and takes advantage of the elemental and chemical sensitivity—we develop an in operando approach to track the dynamic phase transformation process in olivine-type lithium iron phosphate at two size scales: a multiple-particle scale to reveal a rate-dependent intercalation pathway through the entire electrode and a single-particle scale to disclose the intraparticle two-phase coexistence mechanism. These findings uncover the underlying two-phase mechanism on the intraparticle scale and the inhomogeneous charge distribution on the multiple-particle scale. This in operando approach opens up unique opportunities for advancing high-performance energy materials.
机译:锂离子电池中的脱锂反应通常伴随着电化学驱动的相变过程。在电池运行期间以纳米级分辨率跟踪相变过程可提供宝贵的信息,可用于调整动力学势垒,以优化电池材料的物理和电化学性能。在这里,我们使用硬X射线显微镜(可提供纳米级分辨率和材料的深层穿透力,并利用元素和化学敏感性),开发了一种操作中方法来跟踪橄榄石型磷酸锂铁的动态相变过程在两个尺寸尺度上:一个多粒子尺度显示了整个电极的速率依赖性插入途径,而一个单粒子尺度显示了颗粒内两相共存机制。这些发现揭示了粒子内尺度上潜在的两相机理以及多粒子尺度上不均匀的电荷分布。这种操作上的方法为推进高性能能源材料的开发创造了独特的机会。

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