Addition of the bulky redox-active diphosphine 1,8-bis(diphenylphosphino)naphthalene (dppn) to [Fe2(CO)6(µ-edt)] (1) (edt = 1,2-ethanedithiolate) affords [Fe2(CO)4(κ2-dppn)(µ-edt)] (3) as the major product, together with small amounts of a P⁻C bond cleavage product [Fe2(CO)5{κ1-PPh2(1-C10H7)}(µ-edt)] (2). The redox properties of 3 have been examined by cyclic voltammetry and it has been tested as a proton-reduction catalyst. It undergoes a reversible reduction at E1/2 = −2.18 V and exhibits two overlapping reversible oxidations at E1/2 = −0.08 V and E1/2 = 0.04 V. DFT calculations show that while the Highest Occupied Molecular Orbital (HOMO) is metal-centred (Fe⁻Fe σ-bonding), the Lowest...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
This paper reports on the protonation of phosphine-substituted diiron diphosphido carbonyls, analogu...
The work in this thesis is focused on the synthesis, reactivity and electrochemistry of chemical mod...
Diiron complexes bearing redox active diamine ligands have been studied as models of the active site...
The mixed-valence triiron complexes [Fe3(CO)7-x (PPh3) x (μ-edt)2] (x = 0-2; edt = SCH2CH2S) and [Fe...
Article prepares and characterizes a small series of new [FeFe]-ase biomimics which contain a ferroc...
Diiron complexes bearing redox active diamine ligands have been studied as models of the active site...
A mononuclear hexa-coordinated iron carbonyl complex [Fe(mu-bdt)(CO)(2)(PTA)(2)](1) (bdt = 1,2-benze...
[FeFe]-hydrogenases feature a unique active site in which the primary catalytic unit is directly coo...
International audienceThe synthesis, characterization, and protonation of [Fe2(CO)6{(μ-SCH2)2(Et)P═O...
In Nature, hydrogen (H2) is used both as a fuel source and as a facile way to control the pH to biol...
International audience[Fe2(S2C3H6)(CO)5{P(OMe)3}] (2) and [Fe2(S2C3H6)(CO)4{P(OMe)3}2] (3) were sele...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
Two pentacoordinate mononuclear iron carbonyls of the form (bdt)Fe(CO)P<sub>2</sub> [bdt = benzen...
International audienceA DFT study of protonation thermodynamics in H2-evolving biomimetic catalysts ...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
This paper reports on the protonation of phosphine-substituted diiron diphosphido carbonyls, analogu...
The work in this thesis is focused on the synthesis, reactivity and electrochemistry of chemical mod...
Diiron complexes bearing redox active diamine ligands have been studied as models of the active site...
The mixed-valence triiron complexes [Fe3(CO)7-x (PPh3) x (μ-edt)2] (x = 0-2; edt = SCH2CH2S) and [Fe...
Article prepares and characterizes a small series of new [FeFe]-ase biomimics which contain a ferroc...
Diiron complexes bearing redox active diamine ligands have been studied as models of the active site...
A mononuclear hexa-coordinated iron carbonyl complex [Fe(mu-bdt)(CO)(2)(PTA)(2)](1) (bdt = 1,2-benze...
[FeFe]-hydrogenases feature a unique active site in which the primary catalytic unit is directly coo...
International audienceThe synthesis, characterization, and protonation of [Fe2(CO)6{(μ-SCH2)2(Et)P═O...
In Nature, hydrogen (H2) is used both as a fuel source and as a facile way to control the pH to biol...
International audience[Fe2(S2C3H6)(CO)5{P(OMe)3}] (2) and [Fe2(S2C3H6)(CO)4{P(OMe)3}2] (3) were sele...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
Two pentacoordinate mononuclear iron carbonyls of the form (bdt)Fe(CO)P<sub>2</sub> [bdt = benzen...
International audienceA DFT study of protonation thermodynamics in H2-evolving biomimetic catalysts ...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
This paper reports on the protonation of phosphine-substituted diiron diphosphido carbonyls, analogu...
The work in this thesis is focused on the synthesis, reactivity and electrochemistry of chemical mod...