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Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European Journal - Wiley Online Library

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Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Controlling Radical-Type Single-Electron Elementary Steps in

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Evidence for Non‐Innocence of a β‐Diketonate Ligand - Vinum - 2020

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Revealing the thermodynamic driving force for ligand-based

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Catalysts, Free Full-Text

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Ligand Redox Noninnocence in [CoIII(TAML)]0/- Complexes Affects

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Ligand Redox Noninnocence in [CoIII(TAML)]0/- Complexes Affects

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Hybrid cycloolefin ligands for palladium–olefin cooperative

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Synthesis of ruthenium complexes and their catalytic applications

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Use of Crown Ether Functions as Secondary Coordination Spheres for

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Enantioselective counter-anions in photoredox catalysis: The

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

Controlling Radical-Type Single-Electron Elementary Steps in

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

PDF) Molecularly Controlled Catalysis – Targeting Synergies

Radical‐Type Reactivity and Catalysis by Single‐Electron Transfer to or  from Redox‐Active Ligands - van der Vlugt - 2019 - Chemistry – A European  Journal - Wiley Online Library

PDF) Radical‐Type Reactivity and Catalysis by Single‐Electron