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A Scalable Synthesis of Methano[60]fullerene and Congeners by the Oxidative Cyclopropanation Reaction of Silylmethylfullerene
122
Citations
33
References
2011
Year
Materials ScienceInorganic ChemistryChemical EngineeringOrganic Charge-transfer CompoundEngineeringOxidative Cyclopropanation ReactionNovel OrganocatalystsOrganic Solar CellSilylmethylmagnesium ChloridePure 56-π-Electron FullereneFullereneOrganic ChemistryOrganometallic CatalysisCatalysisParent FullereneChemistryScalable Synthesis
1,2-Dihydromethano[60]fullerene and its congeners have attracted much interest, but they have been synthesized only in very low yields because of several insurmountable problems. A new three-stage synthesis involving addition of a silylmethylmagnesium chloride to [60]- and [70]fullerene and oxidation of the anionic intermediate with CuCl(2) afforded the methano[60]- and methano[70]fullerenes in 90% and 70% overall yield, respectively. The reaction with 1,4-diorgano[60]fullerene also proceeded smoothly to give a diastereomerically pure 56-π-electron fullerene that has a higher LUMO level than the parent fullerene and gave a higher open-circuit voltage and better power conversion efficiency when fabricated into an organic photovoltaic device.
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