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Covalent functionalization of chemically converted graphene sheets via silane and its reinforcement

Journal of Materials Chemistry · 2009 · Vol. 19(26) · pp. 4632–4632
Huafeng YangFenghua LiChangsheng ShanDongxue HanQixian ZhangLi NiuAri Ivaska

Abstract

Polydisperse, functionalized, chemically converted graphene (f-CCG) nanosheets, which can be homogeneously distributed into water, ethanol, DMF, DMSO and 3-aminopropyltriethoxysilane (APTS), were obtained via facile covalent functionalization with APTS. The resulting f-CCG nanosheets were characterized by FTIR, XPS, TGA, EDX, AFM, SEM, and TEM. Furthermore, the f-CCG nanosheets as reinforcing components were extended into silica monoliths. Compressive tests revealed that the compressive failure strength and the toughness of f-CCG-reinforced APTS monoliths at 0.1 wt% functionalized, chemically converted graphene sheets compared with the neat APTS monolith were greatly improved by 19.9% and 92%, respectively.

Graphene research and applicationsGraphene and Nanomaterials ApplicationsSupercapacitor Materials and FabricationSurface modificationMonolithGrapheneSilaneMaterials scienceCovalent bondX-ray photoelectron spectroscopyChemical engineeringFourier transform infrared spectroscopyToughness
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