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首页> 外文期刊>Angewandte Chemie >Direct Observation of a Li-Ionic Space-Charge Layer Formed at an Electrode/Solid-Electrolyte Interface
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Direct Observation of a Li-Ionic Space-Charge Layer Formed at an Electrode/Solid-Electrolyte Interface

机译:直接观察在电极/固体电解质界面处形成的锂离子空间电荷层

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摘要

When two different materials come into contact, mobile carriers redistribute at the interface according to their potential difference. Such a charge redistribution is also expected at the interface between electrodes and solid electrolytes. The redistributed ions significantly affect the ion conduction through the interface. Thus, it is essential to determine the actual distribution of the ionic carriers and their potential to improve ion conduction. We succeeded in visualizing the ionic and potential profiles in the charge redistribution layer, or space-charge layer (SCL), formed at the interface between a Cu electrode and Li-conductive solid electrolyte using phase-shifting electron holography and spatially resolved electron energy-loss spectroscopy. These electron microscopy techniques clearly showed the Li-ionic SCL which dropped by 1.3 V within a distance of 10 nm from the interface. These techniques could contribute to the development of next-generation electrochemical devices.
机译:当两种不同的材料接触时,移动运营商根据其潜在差异在界面中重新分配。 在电极和固体电解质之间的界面中也需要这种电荷再分布。 重新分配的离子显着影响通过界面的离子传导。 因此,必须确定离子载体的实际分布及其改善离子传导的可能性。 在使用相移电子全息术和空间分辨的电子能量 - 损耗光谱学。 这些电子显微镜技术清楚地显示了锂离子SCL,其在界面距离10nm的距离内下降1.3V。 这些技术可以有助于开发下一代电化学装置。

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