Deciphering the mechanism of O2 reduction with electronically tunable non-heme iron enzyme model complexes

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Abstract

A homologous series of electronically tuned 2,2′,2′′-nitrilotris(N-arylacetamide) pre-ligands (H3LR) were prepared (R = NO2, CN, CF3, F, Cl, Br, Et, Me, H, OMe, NMe2) and some of their corresponding Fe and Zn species synthesized. The iron complexes react rapidly with O2, the final products of which are diferric mu-oxo bridged species. The crystal structure of the oxidized product obtained from DMA solutions contain a structural motif found in some diiron proteins. The mechanism of iron mediated O2 reduction was explored to the extent that allowed us to construct an empirically consistent rate law. A Hammett plot was constructed that enabled insightful information into the rate-determining step and hence allows for a differentiation between two kinetically equivalent O2 reduction mechanisms.

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Surendhran, R., D’Arpino, A. A., Sciscent, B. Y., Cannella, A. F., Friedman, A. E., MacMillan, S. N., … Lacy, D. C. (2018). Deciphering the mechanism of O2 reduction with electronically tunable non-heme iron enzyme model complexes. Chemical Science, 9(26), 5773–5780. https://doi.org/10.1039/c8sc01621f

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