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A facile room temperature chemical transformation approach for binder-free thin film formation of Ag2Te and lithiation/delithiation chemistry of the film

机译:一种便捷的室温化学转化方法,用于无粘合剂的Ag2Te薄膜形成和薄膜的锂化/脱锂化学

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摘要

The present work demonstrates a highly controllable, facile and environmentally friendly aqueous solution based synthetic method for oxide contamination-free Ag2Te thin films on desired substrates at room temperature using ion exchange induced chemical transformation of Ag/AgxO thin films. The films before and after chemical transformation reaction are characterized using an energy dispersive X-ray analyzer, field emission scanning electron microscopy, X-ray photoelectron spectroscopy, thin film X-ray diffraction technique, high resolution transmission electron microscopy, and the selected area electron diffraction analysis technique. The as-deposited Ag2Te films show a highly crystalline nature even without thermal treatment. Furthermore, the electrochemistry for lithiation/delithiation of the Ag2Te film is studied for exploring its feasibility in the application as an anode material in a Li-ion battery. The experimentally estimated capacity of the Ag2Te electrode for Li storage is found to be about two and half fold larger than the theoretical capacity of the Ag2Te material. This implies that the binder-free Ag2Te film prepared by the current method could find a potential application in the Li-ion or other similar charge storing devices.
机译:本工作展示了一种高度可控,简便且环保的水溶液合成方法,该方法通过使用离子交换诱导的Ag / AgxO薄膜化学转化,在室温下在所需基材上制备无氧化物的Ag2Te薄膜。使用能量色散X射线分析仪,场发射扫描电子显微镜,X射线光电子能谱,薄膜X射线衍射技术,高分辨率透射电子显微镜和选定的区域电子对化学转化反应前后的膜进行表征衍射分析技术。沉积后的Ag2Te薄膜即使不进行热处理也显示出高结晶性。此外,研究了用于Ag 2 Te膜的锂化/脱锂的电化学,以探索其在锂离子电池中用作阳极材料的可行性。发现用于锂存储的Ag2Te电极的实验估算容量约为Ag2Te材料理论容量的两倍半。这意味着通过当前方法制备的无粘合剂的Ag2Te膜可以在锂离子或其他类似的电荷存储装置中找到潜在的应用。

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