The design of molecular complexes of earth-abundant first-row transition metals that can catalyze multi-electron C-H bond activation processes is of interest for achieving efficient, low-cost syntheses of target molecules. To overcome the propensity of these metals to perform single-electron processes, redox-active ligands have been utilized to provide additional electron equivalents. Herein, we report the synthesis of a novel redox active ligand, [ibaps]3-, which binds to transition metals such as FeII and CoII in a meridional fashion through the three anionic nitrogen atoms and provides additional coordination sites for other ligands. In this study, the neutral bidentate ligand 2,2'-bipyridine (bpy) was used to complete the coordination s...
ABSTRACT: Coordination of the redox-active tridentate NNO ligand LH2 to PdII yields the paramagnetic...
Many homogeneous and heterogeneous catalyst systems contain one or more transition metals. The wides...
International audienceThe synthesis of the new ligand, BEDT-TTF-bpy [4,5-ethylenedithio-4',5'-(4'-me...
The design of molecular complexes of earth-abundant first-row transition metals that can catalyze mu...
First row transition metals are attractive candidates for catalysis because they are much more abund...
Redox-active ligands deliver redox equivalents to impart multi-electron functionality at 3d metals t...
Hydrogen bonds within the secondary coordination sphere are effective in controlling the chemistry o...
Within the active sites of metalloenzymes the timely transfer of protons and electrons to the approp...
This thesis focuses on two research projects. The first project reported in Chapter 1 involves the s...
The work reported herein primarily focuses on the development of new platforms for multi-electron re...
Electron-transfer reactions by redox-active transition metals often function by participating with r...
Catalysis is an integral part of society, which is often taken for granted. Over the past few years,...
In many biological and synthetic systems, electron-transfer reactions by redox-active transition met...
First-row transition metal complexes of the tris(pyrrolyl)ethane (tpe) trianion have been prepared. ...
Functional systems that combine redox-active metals and noninnocent ligands are no longer rare chemi...
ABSTRACT: Coordination of the redox-active tridentate NNO ligand LH2 to PdII yields the paramagnetic...
Many homogeneous and heterogeneous catalyst systems contain one or more transition metals. The wides...
International audienceThe synthesis of the new ligand, BEDT-TTF-bpy [4,5-ethylenedithio-4',5'-(4'-me...
The design of molecular complexes of earth-abundant first-row transition metals that can catalyze mu...
First row transition metals are attractive candidates for catalysis because they are much more abund...
Redox-active ligands deliver redox equivalents to impart multi-electron functionality at 3d metals t...
Hydrogen bonds within the secondary coordination sphere are effective in controlling the chemistry o...
Within the active sites of metalloenzymes the timely transfer of protons and electrons to the approp...
This thesis focuses on two research projects. The first project reported in Chapter 1 involves the s...
The work reported herein primarily focuses on the development of new platforms for multi-electron re...
Electron-transfer reactions by redox-active transition metals often function by participating with r...
Catalysis is an integral part of society, which is often taken for granted. Over the past few years,...
In many biological and synthetic systems, electron-transfer reactions by redox-active transition met...
First-row transition metal complexes of the tris(pyrrolyl)ethane (tpe) trianion have been prepared. ...
Functional systems that combine redox-active metals and noninnocent ligands are no longer rare chemi...
ABSTRACT: Coordination of the redox-active tridentate NNO ligand LH2 to PdII yields the paramagnetic...
Many homogeneous and heterogeneous catalyst systems contain one or more transition metals. The wides...
International audienceThe synthesis of the new ligand, BEDT-TTF-bpy [4,5-ethylenedithio-4',5'-(4'-me...