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Single Sheet Functionalized Graphene by Oxidation and Thermal Expansion of Graphite

Chemistry of Materials · 2007 · Vol. 19(18) · pp. 4396–4404
Michael McAllisterJe-Luen LiDouglas H. AdamsonHannes C. SchnieppAhmed AbdalaJun LiuMargarita Herrera‐AlonsoDavid L. MiliusRoberto CarRobert K. Prud’hommeİlhan A. Aksay

Abstract

A detailed analysis of the thermal expansion mechanism of graphite oxide to produce functionalized graphene sheets is provided. Exfoliation takes place when the decomposition rate of the epoxy and hydroxyl sites of graphite oxide exceeds the diffusion rate of the evolved gases, thus yielding pressures that exceed the van der Waals forces holding the graphene sheets together. A comparison of the Arrhenius dependence of the reaction rate against the calculated diffusion coefficient based on Knudsen diffusion suggests a critical temperature of 550 °C which must be exceeded for exfoliation to occur. As a result of their wrinkled nature, the functionalized and defective graphene sheets do not collapse back to graphite oxide but are highly agglomerated. After dispersion by ultrasonication in appropriate solvents, statistical analysis by atomic force microscopy shows that 80% of the observed flakes are single sheets.

Graphene research and applicationsCarbon Nanotubes in CompositesFiber-reinforced polymer compositesGrapheneMaterials scienceOxideGraphiteExfoliation jointDiffusionGraphene oxide paperThermal expansionGraphite oxidevan der Waals force
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