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Global Cardiology Science & Practice|October 19, 2017
Maturation of pluripotent stem cell derived cardiomyocytes: The new challengeIdil Aigha, Christophe Raynaud
Journal of the American Chemical Society|January 21, 2016
Elucidating the Link between NMR Chemical Shifts and Electronic Structure in d(0) Olefin Metathesis CatalystsStéphanie Halbert, Christophe Copéret, Christophe Raynaud, et al.
Inorganic Chemistry|May 9, 2012
Structures of d4 MH3X: a computational study of the influence of the metal and the ligandsAmalia I Poblador-Bahamonde, Christophe Raynaud, Odile Eisenstein
Inorganic Chemistry|September 16, 2008
A rational basis for the axial ligand effect in C-H oxidation by [MnO(porphyrin)(X)]+ (X = H2O, OH-, O2-) from a DFT studyDavid Balcells, Christophe Raynaud, Robert H Crabtree, et al.
Chemical Communications (Cambridge, England)|March 19, 2009
C-H oxidation by hydroxo manganese(v) porphyrins: a DFT studyDavid Balcells, Christophe Raynaud, Robert H Crabtree, et al.
The Journal of Physical Chemistry. A|July 27, 2006
1,4- vs 1,3-prototropic mechanism for intramolecular double proton transfer reaction in monothiooxalic acid. Theoretical investigation of potential energy surfaceChristophe Raynaud, Jean-Pierre Daudey, Laurent Maron, et al.
The Journal of Physical Chemistry. A|January 6, 2006
Ab initio dynamic study of the reaction of Cl2LaR (R=H, CH3) with H2Christophe Raynaud, Jean-Pierre Daudey, Franck Jolibois, et al.
Chemical Communications (Cambridge, England)|May 16, 2008
The rebound mechanism in catalytic C-H oxidation by MnO(tpp)Cl from DFT studies: electronic nature of the active speciesDavid Balcells, Christophe Raynaud, Robert H Crabtree, et al.
Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|January 13, 2006
Berry pseudorotation mechanism for the interpretation of the 19F NMR spectrum in PF5 by ab initio molecular dynamics simulationsChristophe Raynaud, Laurent Maron, Jean-Pierre Daudey, et al.
Journal of the American Chemical Society|July 23, 2014
Cyclometalated N-heterocyclic carbene complexes of ruthenium for access to electron-rich silylene complexes that bind the Lewis acids CuOTf and AgOTfHsueh-Ju Liu, Christophe Raynaud, Odile Eisenstein, et al.
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