16 results on '"Singh, Reena"'
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2. C–H Bond Oxidation by MnIV–Oxo Complexes: Hydrogen-Atom Tunneling and Multistate Reactivity.
3. Nonheme FeIV═O Complexes Supported by Four Pentadentate Ligands: Reactivity toward H- and O- Atom Transfer Processes
4. Nonheme FeIVO Complexes Supported by Four Pentadentate Ligands: Reactivity toward H- and O- Atom Transfer Processes.
5. Enhanced Understanding of Structure–Function Relationships for Oxomanganese(IV) Complexes.
6. Dioxygen Activation and Mandelate Decarboxylation by Iron(II) Complexes of N4 Ligands: Evidence for Dioxygen-Derived Intermediates from Cobalt Analogues
7. A High Spin Mn(IV)-Oxo Complex Generated via Stepwise Proton and Electron Transfer from Mn(III)–Hydroxo Precursor: Characterization and C–H Bond Cleavage Reactivity
8. A Mononuclear Nonheme Iron(IV)-Oxo Complex of a Substituted N4Py Ligand: Effect of Ligand Field on Oxygen Atom Transfer and C–H Bond Cleavage Reactivity
9. Enantiopure tetranuclear iron(III) complexes using chiral reduced schiff base ligands: synthesis, structure, spectroscopy, magnetic properties, and DFT studies
10. Reductive Activation of O2 by Non-Heme Iron(II) Benzilate Complexes of N4 Ligands: Effect of Ligand Topology on the Reactivity of O2-Derived Oxidant
11. Reductive Activation of O2 by Non-Heme Iron(II) Benzilate Complexes of N4 Ligands: Effect of Ligand Topology on the Reactivity of O2-Derived Oxidant.
12. Reductive Activation of O2by Non-Heme Iron(II) Benzilate Complexes of N4Ligands: Effect of Ligand Topology on the Reactivity of O2-Derived Oxidant
13. Enantiopure Tetranuclear lron(lll) Complexes Using Chiral Reduced Schiff Base Ligands: Synthesis, Structure, Spectroscopy, Magnetic Properties, and DFT Studies.
14. C-H Bond Oxidation by Mn IV -Oxo Complexes: Hydrogen-Atom Tunneling and Multistate Reactivity.
15. Nonheme Fe IV ═O Complexes Supported by Four Pentadentate Ligands: Reactivity toward H- and O- Atom Transfer Processes.
16. Reductive Activation of O 2 by Non-Heme Iron(II) Benzilate Complexes of N 4 Ligands: Effect of Ligand Topology on the Reactivity of O 2 -Derived Oxidant.
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