A series of -symmetric (aryl,alkyl)-substituted pyridine(dimine) iron methyl (APDI)FeCH complexes have been prepared, characterized, and evaluated as precatalysts for the [2+2]-cycloaddition of butadiene and ethylene. Mixtures of vinylcyclobutane and ()-hexa-1,4-diene were observed in each case. By comparison, -symmetric, arylated (PDI) iron catalysts are exclusively selective for reversible [2+2]-cycloaddition to yield vinylcyclobutane. The alteration in the chemoselectivity of the catalytic reaction was investigated through a combination of precatalyst stability studies, identification of catalytic resting state(s), and H and C isotopic labeling experiments. While replacement of an aryl-imine substituent with an N-alkyl group decreases the stability of the formally iron(0) dinitrogen and butadiene complexes, two diamagnetic metallacycles were identified as catalyst resting states. Deuterium labeling and NOESY/EXSY NMR experiments support 1,4-hexadiene arising from catalytic hydrovinylation involving reversible oxidative cyclization leading to accessible -metallacycle. Cyclobutane formation proceeds by irreversible C(sp)-C(sp) bond-forming reductive elimination from a -metallacycle. These studies provide key mechanistic understanding into the high selectivity of bis(arylated) pyridine(diimine) iron catalysts for [2+2]-cycloaddition, unique, thus far, to this class of iron catalysts.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10369671PMC
http://dx.doi.org/10.1021/jacsau.3c00229DOI Listing

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