Publication | Closed Access
Synthesis, Characterization, and Catalytic Reactivity of a Highly Basic Macrotricyclic Aminopyridine
40
Citations
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References
2010
Year
Combinatorial ChemistryPyridine UnitEngineeringHeterocyclicBiochemistrySynthesis MethodsNatural SciencesOrganic ChemistryChemistryHeterocycle ChemistryCatalytic ReactivitySynthetic ChemistryBiomolecular Engineering
The synthesis methods, physicochemical and structural characteristics, and catalytic reactivity of new macrocyclic proton chelators, N,N',N''-tris(p-tolyl)azacalix[3](2,6)(4-pyrrolidinopyridine) and N,N',N''-tris(p-tolyl)azacalix[3](2,6)(4-piperidinopyridine), are studied. The introduction of pyrrolidino and piperidino groups into the pyridine unit enables the enhancement of the synergistic proton affinity of the cavity of the macrotricycle giving a high basicity (pK(BH+) = 28.1 and 27.1 in CD(3)CN), resulting in a catalytic activity for the Michael addition of nitromethane with α,β-unsaturated carbonyl compounds.
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