The Fundamental Role of Exchange-Enhanced Reactivity in CH Activation by S=2 Oxo Iron(IV) Complexes
Author:
Publisher
Wiley
Subject
General Medicine
Reference33 articles.
1. Non-Heme Fe(IV)–Oxo Intermediates
2. The Road to Non-Heme Oxoferryls and Beyond
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4. High-valent nonheme iron-oxo species in biomimetic oxidations
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1. Impact of ring size on the C H activation reactivity of iron(IV)–oxo complexes: A computational study with TMC macrocycles;Inorganica Chimica Acta;2024-11
2. A density functional theory analysis of the C–H activation reactivity of iron(iv)-oxo complexes with an ‘O’ substituted tetramethylcyclam macrocycle;Dalton Transactions;2024
3. Unravelling the Effect of Acid‐Driven Electron Transfer in High‐Valent FeIV=O/MnIV=O Species and Its Implications for Reactivity;Chemistry – An Asian Journal;2023-11-06
4. Contemporary Concepts to Decipher the Reactivity of Paramagnetic Transition Metal Catalysts;Handbook of CH‐Functionalization;2022-11-29
5. Role of “S” Substitution on C–H Activation Reactivity of Iron(IV)–Oxo Cyclam Complexes: a Computational Investigation;Inorganic Chemistry;2022-09-07
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