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首页> 外文期刊>Electrochimica Acta >Understanding the lithiation/delithiation process in SnP2O7 anode material for lithium-ion batteries
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Understanding the lithiation/delithiation process in SnP2O7 anode material for lithium-ion batteries

机译:了解锂离子电池SNP2O7阳极材料中的锂化/脱水过程

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Anode materials based on silicon or tin, with distinctively higher theoretical specific capacities of 700 mAh/g compared to the commonly used graphite in Lithium-ion batteries exhibiting limited capacity of 370 mAh/g, are presently in the focus of intensive research studies as new anode materials. In the present work, coated and non-coated tin pyrophosphate materials were successively prepared and their electrochemical performance were compared. The use of carbon coating generally results in an improved cycling stability and a decrease in particles size. The X-ray diffraction patterns of the two samples are similar as indication of an amorphous character of the residual carbon. The scanning electron microscopy images of the both samples show a small particle size (nanometric) and the layers of the graphite are clearly observed. Raman spectroscopy was carried out to identify the D and G bands related to the graphite. X-ray photoelectron spectroscopy (XPS) was used to follow the Sn bonding/valence changes during discharge-charge process and also to identify the SEI layer which is formed at the last step of the discharge process. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于硅或锡的阳极材料,与锂离子电池中的常用石墨相比,具有3770mAh / g的常用石墨的常用石墨的阳极材料,目前在密集研究研究中的重点是新的阳极材料。在本工作中,连续制备涂覆和非涂覆的锡磷酸盐材料,并比较其电化学性能。碳涂层的使用通常导致改善的循环稳定性和颗粒尺寸的降低。两个样品的X射线衍射图与残留碳的无定形特征的指示相似。两个样品的扫描电子显微镜图像显示出小的粒度(纳米型),并且清楚地观察到石墨的层。进行拉曼光谱法以识别与石墨有关的D和G带。 X射线光电子能谱(XPS)用于遵循放电过程期间的Sn键合/价变化,并且还鉴定在放电过程的最后一步形成的SEI层。 (c)2017 Elsevier Ltd.保留所有权利。

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