Publication | Open Access
Enantiospecific <i>cis</i>–<i>trans</i> Isomerization in Chiral Fulleropyrrolidines: Hydrogen-Bonding Assistance in the Carbanion Stabilization in H<sub>2</sub>O@C<sub>60</sub>
43
Citations
43
References
2015
Year
Carbanion StabilizationOrganic ChemistryChemistryIncarcerated Water MoleculeHydrogen-bonding AssistanceFullereneStereoselective SynthesisBiophysicsChiral FulleropyrrolidinesPhotochemistryBiochemistryQuantum ChemistryMolecular ChemistryAsymmetric CatalysisEnantioselective SynthesisNatural SciencesInner Water MoleculeFullerene SizeHydrogen-bonded Liquid
The stereochemical outcome of cis-trans isomerization of optically pure [60], [70], and endohedral H2O@C60 fulleropyrrolidines reveals that the electronic nature of substituents, fullerene size, and surprisingly the incarcerated water molecule plays a crucial role in this rearrangement process. Theoretical DFT calculations are in very good agreement with the experimental findings. On the basis of the experimental results and computational calculations, a plausible reaction mechanism involving the hydrogen-bonding assistance of the inner water molecule in the carbanion stabilization of endofullerene is proposed.
| Year | Citations | |
|---|---|---|
Page 1
Page 1