The Role of Alkoxide Initiator, Spin State, and Oxidation State in Ring-Opening Polymerization of ϵ-Caprolactone Catalyzed by Iron Bis(imino)pyridine Complexes

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Abstract

Density functional theory (DFT) is employed to characterize in detail the mechanism for the ring-opening polymerization (ROP) of ϵ-caprolactone catalyzed by iron alkoxide complexes bearing redox-active bis(imino)pyridine ligands. The combination of iron with the non-innocent bis(imino)pyridine ligand permits comparison of catalytic activity as a function of oxidation state (and overall spin state). The reactivities of aryl oxide versus alkoxide initiators for the ROP of ϵ-caprolactone are also examined. An experimental test of a computational prediction reveals an Fe(III) bis(imino)pyridine bis-neopentoxide complex to be competent for ROP of ϵ-caprolactone.

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Ortuño, M. A., Dereli, B., Chiaie, K. R. D., Biernesser, A. B., Qi, M., Byers, J. A., & Cramer, C. J. (2018). The Role of Alkoxide Initiator, Spin State, and Oxidation State in Ring-Opening Polymerization of ϵ-Caprolactone Catalyzed by Iron Bis(imino)pyridine Complexes. Inorganic Chemistry, 57(4), 2064–2071. https://doi.org/10.1021/acs.inorgchem.7b02964

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