Free or unfunctionalized benzylamines are well known to participate in C–H activation in the presence of palladium salts. Despite the ease with which these complexes can be activated, subsequent functionalization of the dimeric cyclometalates can be challenging. We demonstrate herein a free primary amine-based C–H activation/functionalization protocol that allows for the ortho-C–H chlorination and bromination of unprotected benzylamines. We also demonstrate how use of fluorine-based oxidants gives rise to a unique acetoxylation/cyclization owing to the nucleophilicity of the free primary amine directing group.
Herein we describe a method for combining supramolecular catalysis with imininum-based organocatalysis in the Diels–Alder cycloaddition reaction. Notably, both cage and L-proline are required for the reaction to occur, implying that encap-sulation of the substrates and co-catalyst are necessary for the reaction to occur. We explore the substrate scope for a va-riety of E-cinnamaldehydes and dienes. Finally, we probe the supramolecular assembly processes responsible for the observed catalysis using NMR spectroscopic methods, determining that the reaction is negative order in the cinnamalde-hyde substrate and experiences product inhibition.
Herein we describe a method for combining supramolecular catalysis with imininum-based organocatalysis in the Diels–Alder cycloaddition reaction. Both cage and L-proline are required for the reaction to occur, implying that...
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