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Preparation and Characteristics of Highly Expandable Graphite Intercalation Compounds by Two-step Chemical Intercalation

机译:两步化学嵌入高可膨胀石墨嵌入化合物的制备及特征

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Graphite intercalation compounds (GIC) are the most common precursors for expanded graphites which are promising materials for many applications. A series of GICs with different expanding volumes (EV) were prepared by a two-step chemical intercalation way. Effects of the input of oxidant and intercalating agent on the EV of GICs were discussed. The microstructures and morphologies of graphites before and after intercalation were analylized by X-ray diffraction and scanning electron microscope, respectively. The results show that the GIC with an EV of 600 ml-g"1 may be prepared under temperal conditions by a two-step intercalation way. The interlayer spacing of the pre-GIC formeded by one-step intercalation is a bit larger than that of natural graphites, while the interlayer spacing of the GIC obtained by two-step intercalation becomes much larger than that of the pre-GIC because of secondery intercalation. When the d-spacing (d_(002)) value of the GIC rises from 0.3590 nm up to 0.3711nm, its EV increases from 267 up to 600 ml-g~(-1) due to the decomposition and release of much more intercalated substances during a thermal shock.
机译:石墨嵌入化合物(GIC)是膨胀石墨石最常见的前体,其是许多应用的有希望的材料。通过两步化学嵌入方式制备了一系列具有不同扩展卷(EV)的GIC。讨论了氧化剂和嵌入剂对术语EV的影响。分别通过X射线衍射和扫描电子显微镜分析插入前后石墨的微观结构和形态。结果表明,具有600mL-G“1的EV的GIC可以通过两步嵌入方式在气体条件下制备。由一步介层形成的前GIC的层间间隔有比这更大通过两步嵌入获得的GIC的层间间隔的分层变得远远大于前网格的间隔,因为Secondery嵌入。当D-间距(D_(002))GIC的值升高0.3590 NM高达0.3711nm,由于在热冲击期间,其EV从267增加到600毫升至600mL-G〜(-1)增加,并且在热冲击过程中释放了更多的嵌入物质。

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