(en) Lionel Delaude et Pierre Laszlo, « A Novel Oxidizing Reagent Based on Potassium Ferrate(VI) », The Journal of Organic Chemistry, vol. 61, no 18, , p. 6360-6370 (PMID11667478, DOI10.1021/jo960633p, lire en ligne)
(en) R. H. Holm, « Metal-centered oxygen atom transfer reactions », Chemical Reviews, vol. 87, no 6, , p. 1401-1449 (DOI10.1021/cr00082a005, lire en ligne)
(en) Bernard Meunier, Samuël P. de Visser et Sason Shaik, « Mechanism of Oxidation Reactions Catalyzed by Cytochrome P450 Enzymes », Chemical Reviews, vol. 104, no 9, , p. 3947-3980 (PMID15352783, DOI10.1021/cr020443g, lire en ligne)
(en) Ahmet Gunay et Klaus H. Theopold*, « C−H Bond Activations by Metal Oxo Compounds », Chemical Reviews, vol. 112, no 2, , p. 1060-1081 (DOI10.1021/cr900269x, lire en ligne)
(en) Kenneth Korzekwa, William Trager, Martin Gouterman, Dale Spangler et Gilda Loew, « Cytochrome P450 mediated aromatic oxidation: a theoretical study », Journal of the American Chemical Society, vol. 107, no 14, , p. 4273-4279 (DOI10.1021/ja00300a033, lire en ligne)
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(en) Lionel Delaude et Pierre Laszlo, « A Novel Oxidizing Reagent Based on Potassium Ferrate(VI) », The Journal of Organic Chemistry, vol. 61, no 18, , p. 6360-6370 (PMID11667478, DOI10.1021/jo960633p, lire en ligne)
(en) R. H. Holm, « Metal-centered oxygen atom transfer reactions », Chemical Reviews, vol. 87, no 6, , p. 1401-1449 (DOI10.1021/cr00082a005, lire en ligne)
(en) Bernard Meunier, Samuël P. de Visser et Sason Shaik, « Mechanism of Oxidation Reactions Catalyzed by Cytochrome P450 Enzymes », Chemical Reviews, vol. 104, no 9, , p. 3947-3980 (PMID15352783, DOI10.1021/cr020443g, lire en ligne)
(en) Guodong Du et Mahdi M. Abu-Omar, « Oxo and Imido Complexes of Rhenium and Molybdenum in Catalytic Reductions », Current Organic Chemistry, vol. 12, no 14, , p. 1185-1198 (DOI10.2174/138527208785740238, lire en ligne)
(en) Ahmet Gunay et Klaus H. Theopold*, « C−H Bond Activations by Metal Oxo Compounds », Chemical Reviews, vol. 112, no 2, , p. 1060-1081 (DOI10.1021/cr900269x, lire en ligne)
(en) Robyn S. Hay-Motherwell, Geoffrey Wilkinson, Bilquis Hussain-Bates et Michael B. Hursthouse, « Synthesis and X-ray crystal structure of oxotrimesityliridium(V) », Polyhedron, vol. 12, no 16, , p. 2009-2012 (DOI10.1016/S0277-5387(00)81474-6, lire en ligne)
(en) Alfin D. N. Vaz, Dermot F. McGinnity et Minor J. Coon, « Epoxidation of olefins by cytochrome P450: Evidence from site-specific mutagenesis for hydroperoxo-iron as an electrophilic oxidant », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 7, , p. 3555-3560 (PMID9520404, PMCID19874, DOI10.1073/pnas.95.7.3555, Bibcode1998PNAS...95.3555V, lire en ligne)
(en) Edgardo T. Farinas, Miguel Alcalde et Frances Arnold, « Alkene epoxidation catalyzed by cytochrome P450 BM-3 139-3 », Tetrahedron, vol. 60, no 3, , p. 525-528 (DOI10.1016/j.tet.2003.10.099, lire en ligne)
(en) Kenneth Korzekwa, William Trager, Martin Gouterman, Dale Spangler et Gilda Loew, « Cytochrome P450 mediated aromatic oxidation: a theoretical study », Journal of the American Chemical Society, vol. 107, no 14, , p. 4273-4279 (DOI10.1021/ja00300a033, lire en ligne)
(en) Thomas C. Brunold, « Synthetic iron-oxo “diamond core” mimics structure of key intermediate in methane monooxygenase catalytic cycle », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20641-20642 (PMID18093936, PMCID2409203, DOI10.1073/pnas.0710734105, Bibcode2007PNAS..10420641B, lire en ligne)
(en) Xiongyi Huang et John T. Groves, « Beyond ferryl-mediated hydroxylation: 40 years of the rebound mechanism and C–H activation », Journal of Biological Inorganic Chemistry, vol. 22, no 2, , p. 185-207 (PMID27909920, PMCID5350257, DOI10.1007/s00775-016-1414-3, lire en ligne)
(en) Guodong Du et Mahdi M. Abu-Omar, « Oxo and Imido Complexes of Rhenium and Molybdenum in Catalytic Reductions », Current Organic Chemistry, vol. 12, no 14, , p. 1185-1198 (DOI10.2174/138527208785740238, lire en ligne)
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ui.adsabs.harvard.edu
(en) Alfin D. N. Vaz, Dermot F. McGinnity et Minor J. Coon, « Epoxidation of olefins by cytochrome P450: Evidence from site-specific mutagenesis for hydroperoxo-iron as an electrophilic oxidant », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 7, , p. 3555-3560 (PMID9520404, PMCID19874, DOI10.1073/pnas.95.7.3555, Bibcode1998PNAS...95.3555V, lire en ligne)
(en) Thomas C. Brunold, « Synthetic iron-oxo “diamond core” mimics structure of key intermediate in methane monooxygenase catalytic cycle », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20641-20642 (PMID18093936, PMCID2409203, DOI10.1073/pnas.0710734105, Bibcode2007PNAS..10420641B, lire en ligne)
(en) Lionel Delaude et Pierre Laszlo, « A Novel Oxidizing Reagent Based on Potassium Ferrate(VI) », The Journal of Organic Chemistry, vol. 61, no 18, , p. 6360-6370 (PMID11667478, DOI10.1021/jo960633p, lire en ligne)
(en) Bernard Meunier, Samuël P. de Visser et Sason Shaik, « Mechanism of Oxidation Reactions Catalyzed by Cytochrome P450 Enzymes », Chemical Reviews, vol. 104, no 9, , p. 3947-3980 (PMID15352783, DOI10.1021/cr020443g, lire en ligne)
(en) Alfin D. N. Vaz, Dermot F. McGinnity et Minor J. Coon, « Epoxidation of olefins by cytochrome P450: Evidence from site-specific mutagenesis for hydroperoxo-iron as an electrophilic oxidant », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 7, , p. 3555-3560 (PMID9520404, PMCID19874, DOI10.1073/pnas.95.7.3555, Bibcode1998PNAS...95.3555V, lire en ligne)
(en) Thomas C. Brunold, « Synthetic iron-oxo “diamond core” mimics structure of key intermediate in methane monooxygenase catalytic cycle », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20641-20642 (PMID18093936, PMCID2409203, DOI10.1073/pnas.0710734105, Bibcode2007PNAS..10420641B, lire en ligne)
(en) Xiongyi Huang et John T. Groves, « Beyond ferryl-mediated hydroxylation: 40 years of the rebound mechanism and C–H activation », Journal of Biological Inorganic Chemistry, vol. 22, no 2, , p. 185-207 (PMID27909920, PMCID5350257, DOI10.1007/s00775-016-1414-3, lire en ligne)
(en) Alfin D. N. Vaz, Dermot F. McGinnity et Minor J. Coon, « Epoxidation of olefins by cytochrome P450: Evidence from site-specific mutagenesis for hydroperoxo-iron as an electrophilic oxidant », Proceedings of the National Academy of Sciences of the United States of America, vol. 95, no 7, , p. 3555-3560 (PMID9520404, PMCID19874, DOI10.1073/pnas.95.7.3555, Bibcode1998PNAS...95.3555V, lire en ligne)
(en) Thomas C. Brunold, « Synthetic iron-oxo “diamond core” mimics structure of key intermediate in methane monooxygenase catalytic cycle », Proceedings of the National Academy of Sciences of the United States of America, vol. 104, no 52, , p. 20641-20642 (PMID18093936, PMCID2409203, DOI10.1073/pnas.0710734105, Bibcode2007PNAS..10420641B, lire en ligne)
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(en) Robyn S. Hay-Motherwell, Geoffrey Wilkinson, Bilquis Hussain-Bates et Michael B. Hursthouse, « Synthesis and X-ray crystal structure of oxotrimesityliridium(V) », Polyhedron, vol. 12, no 16, , p. 2009-2012 (DOI10.1016/S0277-5387(00)81474-6, lire en ligne)
(en) Edgardo T. Farinas, Miguel Alcalde et Frances Arnold, « Alkene epoxidation catalyzed by cytochrome P450 BM-3 139-3 », Tetrahedron, vol. 60, no 3, , p. 525-528 (DOI10.1016/j.tet.2003.10.099, lire en ligne)
(en) Xiongyi Huang et John T. Groves, « Beyond ferryl-mediated hydroxylation: 40 years of the rebound mechanism and C–H activation », Journal of Biological Inorganic Chemistry, vol. 22, no 2, , p. 185-207 (PMID27909920, PMCID5350257, DOI10.1007/s00775-016-1414-3, lire en ligne)