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

$ 26.00

4.9
(609)
In stock
Description

Synthesis of ruthenium complexes and their catalytic applications

Formation and degradation of strongly reducing cyanoarene-based

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

Controlling Radical-Type Single-Electron Elementary Steps in

Control over the Redox Cooperative Mechanism of Radical Carbene

Controlling Radical-Type Single-Electron Elementary Steps in

Phosphines and N‐Heterocycles Joining Forces: an Emerging

Chemistry – A European Journal: Vol 25, No 11 - Chemistry Europe

Enantioselective counter-anions in photoredox catalysis: The

Chemistry With N-Centered Radicals Generated by Single-Electron

Catalysis of Radical Reactions: A Radical Chemistry Perspective

Synthesis of ruthenium complexes and their catalytic applications

Harnessing Radical Chemistry via Electrochemical Transition Metal

Catalysts, Free Full-Text