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Facile Synthesis of Highly Graphitized Carbon viaReaction of CaC2 with Sulfur and Its Application for Lithium/Sodium-IonBatteries

机译:通过轻松合成高石墨化碳。CaC2与硫的反应及其在锂/钠离子中的应用电池

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摘要

In the present work, we report, for the first time, a novel one-step approach to prepare highly graphitized carbon (HGC) material by selectively etching calcium from calcium carbide (CaC2) using a sulfur-based thermo-chemical etching technique. Comprehensive analysis using X-ray diffraction, Raman spectroscopy, X-ray photoelectron spectroscopy, and N2 adsorption–desorption isotherms reveals a highly graphitized mesoporous structure for the CaC2-derived carbon with a specific surface area of 159.5 m2 g–1. Microscopic analysis displays micron-scale mesoporous frameworks (4–20 μm) with a distinct layered structure along with agglomerates of highly graphitized nanosheets (about 10 nm in thickness and 1–10 μm lateral size). The as-prepared HGC is investigated for the role of an anode material for lithium- and sodium-ion batteries. We found that HGC exhibits good lithium storage performance in the 0.01–1.5 V range (reversible capacity of 272.4 mA h g–1 at 50 mA g–1 after 100 cycles and 214.2 mA h g–1 at 500 mA g–1 after 500 cycles), whereas, when sodium is considered, we observed a drop in the overall electrochemical performance owing to the high graphitization degree.More importantly, the present study provides a perspective approachto fabricate HGC via a simple, cost-effective, and efficient syntheticroute using CaC2 and sulfur as reactants.
机译:在本工作中,我们首次报告了一种新颖的一步法,该方法通过使用硫基热化学蚀刻技术从碳化钙(CaC2)中选择性蚀刻钙来制备高度石墨化的碳(HGC)材料。使用X射线衍射,拉曼光谱,X射线光电子能谱和N2吸附-解吸等温线进行的综合分析显示,CaC2衍生的碳具有高度石墨化的介孔结构,比表面积为159.5 m 2 g –1 。显微镜分析显示微米级的介孔骨架(4-20μm),具有明显的分层结构,以及高度石墨化的纳米片的聚集体(厚度约10 nm,横向尺寸约1-10μm)。研究了所制备的HGC在锂和钠离子电池负极材料中的作用。我们发现HGC在0.01–1.5 V范围内表现出良好的锂存储性能(100个循环和214.2次循环后,在50 mA g –1 时可逆容量为272.4 mA hg –1 ) 500个循环后在500 mA g –1 时为mA hg –1 ),而当考虑使用钠时,由于高石墨化,我们观察到整体电化学性能下降学位。更重要的是,本研究提供了一种透视方法通过简单,经济高效的合成方法制造HGCCaC2和硫作为反应物的路线。

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