Nanotechnology · 2008 · 50 citations · 32 references
EngineeringOrganic ChemistryComputational ChemistryChemistryPolyphenolicsChemical EngineeringOptical PropertiesFullereneBiophysicsElectron DensityPhotochemistryPhysical ChemistryMolecular AggregateQuantum ChemistryAdsorption SiteHydroxyl GroupsNatural SciencesHydroxyl Group DistributionMolecule-based Material
We investigate the impact of hydroxyl groups on the properties of C(60)(OH)(n) systems, with n = 1, 2, 3, 4, 8, 10, 16, 18, 24, 32 and 36 by means of first-principles density functional theory calculations. A detailed analysis from the local density of states has shown that adsorbed OH groups can induce dangling bonds in specific carbon atoms around the adsorption site. This increases the tendency to form polyhydroxylated fullerenes (fullerenols). The structural stability is analyzed in terms of the calculated formation enthalpy of each species. Also, a careful examination of the electron density of states for different fullerenols shows the possibility of synthesizing single molecules with tunable optical properties.
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Harold W. Kroto, J. R. Heath, Sean C. O’Brien et al. · Nature · 1985 · 15.7K citations
The SIESTA method for<i>ab initio</i>order-<i>N</i>materials simulation
José M. Soler, Emilio Artacho, Julian D. Gale et al. · Journal of Physics Condensed Matter · 2002 · 11.7K citations · Full text