Epiphanie Mugeniwabagara
Université libre de Bruxelles
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Epiphanie Mugeniwabagara.
Inorganic Chemistry | 2010
Emilie Cauet; Stuart Bogatko; Epiphanie Mugeniwabagara; Luca Fusaro; Andrée Kirsch-De Mesmaeker; Michel Luhmer; Nathalie Vaeck
The unprotonated and protonated monoreduced forms of the polyazaaromatic Ru(II) coordination complexes [Ru(tap)(3)](2+) and [Ru(tap)(2)(phen)](2+) (tap = 1,4,5,8-tetraazaphenanthrene ; phen = 1,10-phenanthroline), that is, [Ru(tap)(3)](*+), [Ru(tap)(2)(phen)](*+), [Ru(tap)(2)(tap-H)](*2+), and [Ru(tap)(tap-H)(phen)](*2+), were studied by Density Functional Theory (DFT). The electron spin density of these radical cations, the isotropic Fermi-contact, and the anisotropic dipolar contributions to the hyperfine coupling constants of the H nuclei were calculated in vacuo and using a continuum model for water solvation. For [Ru(tap)(2)(phen)](*+), as well as for its protonated form, the DFT results show that the unpaired electron is not localized on the phen ligand. For both [Ru(tap)(3)](*+) and [Ru(tap)(2)(phen)](*+), they reveal high electron spin density in the vicinity of tap H-2 and tap H-7 (the H atoms in the ortho position of the tap non-chelating N atoms). These results are in full agreement with recent steady-state (1)H photo-Chemically Induced Dynamic Nuclear Polarization (photo-CIDNP) measurements. The DFT calculations performed for the protonated species also predict major (1)H photo-CIDNP enhancements at these positions. Interestingly, they indicate significantly different polarization for tap H-9,10, suggesting that the occurrence of a photoinduced electron transfer with protonation of the reduced species might be detected by high-precision photo-CIDNP experiments.
Magnetic Resonance in Chemistry | 2013
Epiphanie Mugeniwabagara; Luca Fusaro; Michel Luhmer
Chemical equivalence in symmetrical polyazaaromatic ligands is not necessarily retained in the corresponding heteroleptic ruthenium(II) complexes, and the assignment of the 1H NMR spectrum of these octahedral metallic compounds is therefore not straightforward. This work shows that full assignment can be achieved on the basis of long‐range interligand NOE measurements. Copyright
Journal of the American Chemical Society | 2009
Sandrine Perrier; Epiphanie Mugeniwabagara; Andrée Kirsch-De Mesmaeker; P. J. Hore; Michel Luhmer
Inorganic Chemistry | 2017
Ludovic Troian-Gautier; Epiphanie Mugeniwabagara; Luca Fusaro; CeÌcile Moucheron; AndreÌe Kirsch-De Mesmaeker; Michel Luhmer
Journal of the American Chemical Society | 2017
Ludovic Troian-Gautier; Epiphanie Mugeniwabagara; Luca Fusaro; Emilie Cauet; Andrée Kirsch-De Mesmaeker; Michel Luhmer
Archive | 2014
Ludovic Troian Gautier; Epiphanie Mugeniwabagara; Luca Fusaro; Cécile Moucheron; Andrée Kirsch-De Mesmaeker; Michel Luhmer
Archive | 2012
Epiphanie Mugeniwabagara; Michel Luhmer
Archive | 2012
Emilie Cauet; Stuart Bogatko; Epiphanie Mugeniwabagara; Luca Fusaro; Cécile Moucheron; Andrée Kirsch-De Mesmaeker; Michel Luhmer; Nathalie Vaeck
Archive | 2011
Emilie Cauet; Stuart Bogatko; Luca Fusaro; Epiphanie Mugeniwabagara; Andrée Kirsch-De Mesmaeker; Michel Luhmer; Nathalie Vaeck
Archive | 2010
Emilie Cauet; Stuart Bogatko; Epiphanie Mugeniwabagara; Luca Fusaro; Andrée Kirsch-De Mesmaeker; Michel Luhmer; Nathalie Vaeck