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Structural and electrochemical studies of a hexaphenylbenzene pyrolysed soft carbon as anode material in lithium batteries

机译:六苯基苯热解软碳作为锂电池负极材料的结构和电化学研究

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摘要

XRD, SEM micrographs, BET analyses and typical electrochemical experiments (cyclic voltammetry, step voltammetry and Li insertion/deinsertion at constant current) have been carried out to characterize a new type of soft carbons obtained by pyrolysis of hexaphenylbenzene (HPB). By means of XRD and cyclic voltammetry at least three different type of sites for lithium storage were found. The first is graphite like type with d{sub}(002) graphene layer distance greater than pure graphite; the second is associated to disordered volumes among crystallities and the third is represented by Li sites at the hydrogen-terminated edges of hexagonal carbon fragments, characterized by higher energy in comparison with simple insertion sites. These last two types of sites are able to store some extra lithium, compared to pure graphite. BET analyses and cyclic voltammetries demonstrate the key role of the milling time on the characteristics and properties of this HPB pyrolysed carbon. Specific capacities shown by this pyrolysed material in Li coin-type cell have been also reported.
机译:XRD,SEM显微照片,BET分析和典型的电化学实验(循环伏安法,阶梯伏安法和恒定电流下Li的插入/插入)已经进行了表征,以表征通过六苯苯(HPB)的热解获得的新型软碳。通过XRD和循环伏安法,发现至少三种不同类型的锂存储位点。第一种是类石墨类型,其d {sub}(002)石墨烯层距离大于纯石墨。第二个与晶体之间的无序体积有关,第三个由六边形碳片段氢封端的Li位表示,与简单的插入位相比,其能量更高。与纯石墨相比,这最后两种类型的位置能够存储一些额外的锂。 BET分析和循环伏安法证明了研磨时间对这种HPB热解碳的特性和性质的关键作用。还已经报道了这种热解材料在Li纽扣型电池中显示的比容量。

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