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阴离子插层石墨:通过原位原子力显微镜进行的电化学与摩擦学联合研究

Anion intercalated graphite: a combined electrochemical and tribological investigation by in situ AFM.

作者信息

Bussetti G, Campione M, Bossi A, Yivlialin R, DuÒ L, Ciccacci F

机构信息

Department of Physics, Politecnico di Milano, Milano, Italy.

Department of Earth and Environmental Sciences, Università degli Studi di Milano-Bicocca, Milano, Italy.

出版信息

J Microsc. 2020 Dec;280(3):222-228. doi: 10.1111/jmi.12927. Epub 2020 Jun 7.

Abstract

The intercalation of graphite by electrochemical methods is an efficient strategy to produce massive graphene flakes. In fact, when graphite is biased inside an acidic solution, anions enter inside the stratified structure of the electrode and reduce the layer-to-layer interaction. Consequently, a gentle sonication is sufficient to disperse the graphene flakes inside the electrolyte. In view of an optimisation of the production protocol, a detailed analysis of the intercalation mechanism at the molecular length scale is mandatory. In the last 30 years, electrochemical (EC) scanning probe microscopies (e.g. EC-STM and in situ AFM) have been widely exploited in this research topic. In fact, these techniques have the possibility of combining the EC characterisation (e.g. cyclic-voltammetry, CV) with mechanical characterisation (e.g. adhesion and friction) and topography acquisition with high (molecular) lateral resolution. In this work, we investigate the tribological properties of the basal surface of graphite before and after the anion intercalation. By comparing the results acquired after the extraction of the graphite electrode from the EC cell with those collected inside the EC cell during the CV by an in situ AFM, we show how some features deriving from anisotropic friction can be exploited to unveil the very early stage of graphite exfoliation.

摘要

通过电化学方法将阴离子插入石墨中是制备大量石墨烯薄片的有效策略。事实上,当石墨在酸性溶液中施加偏压时,阴离子会进入电极的层状结构内部,降低层间相互作用。因此,温和的超声处理足以使石墨烯薄片分散在电解质中。为了优化生产方案,必须在分子长度尺度上对插入机制进行详细分析。在过去的30年里,电化学(EC)扫描探针显微镜(如EC-STM和原位AFM)已在该研究课题中得到广泛应用。事实上,这些技术有可能将EC表征(如循环伏安法,CV)与机械表征(如粘附力和摩擦力)以及具有高(分子)横向分辨率的形貌采集相结合。在这项工作中,我们研究了阴离子插入前后石墨基面的摩擦学特性。通过将从EC池中取出石墨电极后获得的结果与原位AFM在CV过程中在EC池内收集的结果进行比较,我们展示了如何利用一些源于各向异性摩擦的特征来揭示石墨剥离的早期阶段。

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