石墨烯
材料科学
碳纤维
电导率
骨料(复合)
纳米技术
复合材料
化学
复合数
物理化学
作者
И. В. Антонец,Yevgeny A. Golubev,V. I. Shcheglov
标识
DOI:10.1080/1536383x.2023.2226273
摘要
AbstractAbstractUnderstanding the mechanisms of conductivity in disordered carbon materials is one key to creating applied materials based on them. We present a new promising approach to quantitatively assessing the effect of structural parameters on the conductivity of disordered sp2 carbon materials within the framework of a simplified current tube model. Stacks of graphene layers of complex shape and chaotic in contacts as an aggregate of sequentially located and parallel tubes were presented. This approximation made it possible to obtain a reliable quantitative estimate of the influence of the stacks size of graphene layers and their size distribution, as well as the size of the gaps between the stacks on the conductivity. The theoretical positions of the model were tested using the experimentally obtained parameters of the structure of two typical natural disordered carbon materials (shungites).Keywords: Graphene-containing shungite carbondisordered carbonconductivityelectrical resistivitycurrent tubes model AcknowledgementsThe work was carried out within the framework of the state task of the Institute of Radio Engineering and Electronics named after V.A. Kotelnikov RAS (V.S.) and as part of research topics of the Institute of Geology of Komi SC of RAS (Ye.G.). We thank Alexandr S. Prikhodko and Nikolay I. Borgardt for studying the samples by the STEM.Disclosure statementNo potential conflict of interest was reported by the author(s).Data availability statementData will be made available on request.
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