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C-H Bond Cleavage by Bioinspired Nonheme Oxoiron(IV) Complexes, Including Hydroxylation of n-Butane.
Inorg Chem. 2015 Jun 1;54(11):5053-64. doi: 10.1021/ic502786y. Epub 2015 Mar 9.
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Hydrogen Atom Transfer Reactions of Mononuclear Nonheme Metal-Oxygen Intermediates.
Acc Chem Res. 2018 Sep 18;51(9):2014-2022. doi: 10.1021/acs.accounts.8b00299. Epub 2018 Sep 4.
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Effects of Noncovalent Interactions on High-Spin Fe(IV)-Oxido Complexes.
J Am Chem Soc. 2020 Jul 8;142(27):11804-11817. doi: 10.1021/jacs.0c03085. Epub 2020 Jun 24.
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Bioinspired Nonheme Iron Catalysts for C-H and C═C Bond Oxidation: Insights into the Nature of the Metal-Based Oxidants.
Acc Chem Res. 2015 Sep 15;48(9):2612-21. doi: 10.1021/acs.accounts.5b00053. Epub 2015 Aug 17.
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Synthetic mononuclear nonheme iron-oxygen intermediates.
Acc Chem Res. 2015 Aug 18;48(8):2415-23. doi: 10.1021/acs.accounts.5b00218. Epub 2015 Jul 23.
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Regulating the Basicity of Metal-Oxido Complexes with a Single Hydrogen Bond and Its Effect on C-H Bond Cleavage.
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Redox potential and C-H bond cleaving properties of a nonheme Fe(IV)=O complex in aqueous solution.
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Bio-inspired Nonheme Iron Oxidation Catalysis: Involvement of Oxoiron(V) Oxidants in Cleaving Strong C-H Bonds.
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μ-Nitrido Diiron Macrocyclic Platform: Particular Structure for Particular Catalysis.
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Preparation, Spectroscopic Characterization, and Reactivity of High-Valent Non-Oxo Co(IV) and Formally Co(V) Complexes.
JACS Au. 2025 Jul 15;5(7):3575-3588. doi: 10.1021/jacsau.5c00589. eCollection 2025 Jul 28.
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Basicity-Controlled C-H Bond Activation by a Structurally Characterized Ni(III)-Hydroxo Complex.
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Generation of [(N4Py)Fe(IV)═O] through Heterolytic O-O Bond Cleavage in [(N4Py)Fe(II)(OOH)].
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Flash Communication: Flexibility of a Biologically Inspired Ligand Framework for Intramolecular C-H Activation.
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Impact of Secondary Sphere Hydrogen Bonds on O Reactivity within a Nonheme Iron Complex.
J Am Chem Soc. 2025 Feb 12;147(6):5099-5105. doi: 10.1021/jacs.4c15153. Epub 2025 Feb 2.
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Electron transfer in biological systems.
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Iron-Catalyzed C-H Oxygenation Using Perchlorate Enabled by Secondary Sphere Hydrogen Bonds.
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本文引用的文献

1
Structure-Spectroscopy Correlations for Intermediate Q of Soluble Methane Monooxygenase: Insights from QM/MM Calculations.
J Am Chem Soc. 2021 May 5;143(17):6560-6577. doi: 10.1021/jacs.1c01180. Epub 2021 Apr 22.
2
XFEL Crystal Structures of Peroxidase Compound II.
Angew Chem Int Ed Engl. 2021 Jun 21;60(26):14578-14585. doi: 10.1002/anie.202103010. Epub 2021 May 19.
3
Biochemistry of aerobic biological methane oxidation.
Chem Soc Rev. 2021 Mar 7;50(5):3424-3436. doi: 10.1039/d0cs01291b. Epub 2021 Jan 25.
4
Navigating the Unnatural Reaction Space: Directed Evolution of Heme Proteins for Selective Carbene and Nitrene Transfer.
Acc Chem Res. 2021 Mar 2;54(5):1209-1225. doi: 10.1021/acs.accounts.0c00591. Epub 2021 Jan 25.
6
Ascorbate Peroxidase Compound II Is an Iron(IV) Oxo Species.
J Am Chem Soc. 2020 Nov 10. doi: 10.1021/jacs.0c09108.
7
Ribonucleotide Reductases: Structure, Chemistry, and Metabolism Suggest New Therapeutic Targets.
Annu Rev Biochem. 2020 Jun 20;89:45-75. doi: 10.1146/annurev-biochem-013118-111843.
8
Enzymes knuckle down to the job.
Nat Chem Biol. 2020 Aug;16(8):815-816. doi: 10.1038/s41589-020-0585-y.
9
Effects of Noncovalent Interactions on High-Spin Fe(IV)-Oxido Complexes.
J Am Chem Soc. 2020 Jul 8;142(27):11804-11817. doi: 10.1021/jacs.0c03085. Epub 2020 Jun 24.
10
Enantioselective Hydroxylation of Benzylic C(sp)-H Bonds by an Artificial Iron Hydroxylase Based on the Biotin-Streptavidin Technology.
J Am Chem Soc. 2020 Jun 17;142(24):10617-10623. doi: 10.1021/jacs.0c02788. Epub 2020 Jun 3.

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