J. Org. Chem., 2017, 82 (18), pp 9751– (original) (raw)

J. Org. Chem. 2017, 82, 9751−

Abdullah M. Asiri

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A Mild and General Method for the Synthesis of 5-Substituted and 5,5-Disubstituted Fulleroprolines

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Fred Wudl

The Journal of Organic Chemistry, 1995

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Functionalization of C60 via organometallic reagents

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Metal-Free Synthesis of N-Alkyl-2,5-Unsubstituted/ Monosubstituted Fulleropyrrolidines: Reaction of [60]Fullerene with Paraformaldehyde and Amines

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Fullerene lipids: Synthesis of C60 fullerence derivatives bearing a long-chain saturated or unsaturated triester system

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ChemInform, 2003

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John Selegue

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Palladium-Catalyzed Heteroannulation of Indole-1-carboxamides with [60]Fullerene and Subsequent Electrochemical Transformations

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Organic Letters, 2019

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Fullerene-Acetylene Molecular Scaffolding: Chemistry of 2-functionalized 1-ethynylated C60, oxidative homocoupling, hexakis-adduct formation, and attempted synthesis of C1242?

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Helvetica Chimica Acta, 1996

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Facile preparation of aqueous fullerene C60 nanodispersions

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J. Org. Chem. 2017, 82, 8617−

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Spectroscopic Analyses of Modified Fulleropyrrolidine Derivatives

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Facile preparation of amine and amino acid adducts of [60]fullerene using chlorofullerene C60Cl6 as a precursor

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Preparation and Extensive Characterization of Fullerenol C60

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Seven-Minute Synthesis of PureCs-C60Cl6 from [60]Fullerene and Iodine Monochloride: First IR, Raman, and Mass Spectra of 99 mol % C60Cl6

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Chemistry-a European Journal, 2005

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Fulleren Chemistry

Philip Baldeo

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The reaction of ethyl 2,6-dimethyl-1,4-dihydropyridine-3,5-dicarboxylate with fullerene C60

Anatoly Lobach

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New developments in the organic chemistry of fullerenes

Jan-cornelis Hummelen

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Fragments of Fullerenes: Novel Syntheses, Structures and Reactions

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Bioapplication and activity of fullerenol C 60 (OH)

Rade Injac

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