Publication | Closed Access
Area-selective passivation of sp<sup>2</sup> carbon surfaces by supramolecular self-assembly
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Citations
17
References
2017
Year
Materials ScienceGraphene NanomeshesSupramolecular AssemblyEngineeringCarbon-based MaterialSurface FunctionalizationSurface ChemistryNanomaterialsSelf-assemblySurface ScienceGraphene FiberGrapheneChemical ReactivityGraphene NanoribbonChemistryCovalent GraftingAryl RadicalsSupramolecular Self-assembly
Altering the chemical reactivity of graphene can offer new opportunities for various applications. Here, we report that monolayers of densely packed n-pentacontane significantly reduce the covalent grafting of aryl radicals to graphitic surfaces. The effect is highly local in nature and on fully covered substrates grafting can occur only at monolayer imperfections such as interdomain borders and vacancy defects. Grafting partially covered substrates primarily results in the covalent modification of uncoated areas.
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