Publication | Closed Access
Superbases in Confined Space: Control of the Basicity and Reactivity of the Proton Transfer
37
Citations
31
References
2013
Year
Chemical BiologyMolecular RecognitionEngineeringBiochemistryNatural SciencesMolecular CavityProton-coupled Electron TransferProton TransferMolecular BiologyStructure-function Enzyme KineticsMolecular BiophysicsChemistrySupramolecular ChemistryChemical PropertiesConfined SpaceBiophysicsHost-guest Chemistry
Endohedral functionalization of the molecular cavity of host molecules is in high demand in many areas of supramolecular chemistry. When highly reactive species are incarcerated in the confined space of a molecular cavity, deep changes of their chemical properties are expected. Here, we show that the superbasic properties of proazaphosphatranes can be improved in the confined space of the molecular cavity of hemicryptophane hosts. A general and modular procedure is described to prepare supramolecular superbases with various cavity sizes. The rate of proton transfer is strongly dependent on the shape and size of the inner cavity of the designed superbasic structure. Kinetic and thermodynamic data are strongly correlated to the space available around the basic center as revealed by the X-ray molecular structures analyses.
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