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Modified natural graphite as anode material for lithium ion batteries

机译:改性天然石墨作为锂离子电池负极材料

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A concentrated nitric acid solution was used as an oxidant to modify the electrochemical performance of natural graphite as anode material for lithium ion batteries. Results of X-ray photoelectron spectroscopy, electron paramagnetic resonance, thermogravimmetry, differential thermal analysis, high resolution electron microscopy, and measurement of the reversible capacity suggest that the surface structure of natural graphite was changed, a fresh dense layer of oxides was formed. Some structural imperfections were removed, and the stability of the graphite structure increased. These changes impede decomposition of electrolyte solvent molecules, co-intercalation of solvated lithium ions and movement of graphene planes along the a-axis direction. Concomitantly, more micropores were introduced, and thus, lithium intercalation and deintercalation were favored and more sites were provided for lithium storage. Consequently, the reversible capacity and the cycling behavior of the modified natural graphite were much improved by the oxidation. Obviously, the liquid-solid oxidation is advantageous in controlling the uniformity of the products.
机译:浓硝酸溶液用作氧化剂,以改变天然石墨作为锂离子电池负极材料的电化学性能。 X射线光电子能谱,电子顺磁共振,热重分析,差示热分析,高分辨率电子显微镜和可逆容量的测量结果表明,天然石墨的表面结构发生了变化,形成了一层新鲜致密的氧化物层。消除了一些结构上的缺陷,并且提高了石墨结构的稳定性。这些变化阻碍了电解质溶剂分子的分解,溶剂化锂离子的共嵌入以及石墨烯平面沿a轴方向的移动。同时,引入了更多的微孔,因此有利于锂的嵌入和脱嵌,并为锂的存储提供了更多的位置。因此,通过氧化大大改善了改性天然石墨的可逆容量和循环性能。显然,液固氧化在控制产物的均匀性方面是有利的。

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