TY - JOUR
T1 - Coordination chemistry of new chiral P,N ferrocenyl ligands with half-sandwich ruthenium(II), rhodium(III), and iridium(III) complexes
AU - García-Melchor, Max
AU - Poli, Rinaldo
AU - Manoury, Eric
AU - Wei, Muh Mei
AU - Deydier, Eric
AU - Lledós, Agustí
AU - Daran, Jean Claude
AU - Audin, Catherine
PY - 2012/9/24
Y1 - 2012/9/24
N2 - The new half-sandwich ruthenium(II), rhodium(III), and iridium(III) complexes (p-cymene)RuCl 2L and Cp*MCl 2L (M = Rh, Ir), where L is a planar chiral ferrocenyl tosylamine-phosphine ligand {1,2-(TosNRCH 2)(PPh 2)C 5H 3}FeCp (R = H, Me) coordinated in a monodentate fashion (κ 1P), have been synthesized and fully characterized both in solution (multinuclear NMR, mass spectrometry) and in the solid state (X-ray analysis on single crystals). Intra- and intermolecular N-H⋯Cl bonds were observed. Variable-temperature NMR shows an equilibrium between different structures, which have been discussed with the help of DFT calculations. Addition of triethylamine to the complexes with R = H allows removing the tosylamide acidic hydrogen, giving rise to a ferrocenyl amidophosphine ligand coordinated in a bidentate fashion (κ 2P,N). All complexes have been fully characterized by multinuclear NMR and mass spectrometry. The structure of the iridium complex, determined by X-ray diffraction, shows a planar nitrogen atom and a stable metal-centered chirality. Only the most stable diastereoisomer, according to DFT calculations, has been observed. A number of these complexes were assessed in the catalytic transfer hydrogenation and asymmetric transfer hydrogenation of acetophenone. © 2012 American Chemical Society.
AB - The new half-sandwich ruthenium(II), rhodium(III), and iridium(III) complexes (p-cymene)RuCl 2L and Cp*MCl 2L (M = Rh, Ir), where L is a planar chiral ferrocenyl tosylamine-phosphine ligand {1,2-(TosNRCH 2)(PPh 2)C 5H 3}FeCp (R = H, Me) coordinated in a monodentate fashion (κ 1P), have been synthesized and fully characterized both in solution (multinuclear NMR, mass spectrometry) and in the solid state (X-ray analysis on single crystals). Intra- and intermolecular N-H⋯Cl bonds were observed. Variable-temperature NMR shows an equilibrium between different structures, which have been discussed with the help of DFT calculations. Addition of triethylamine to the complexes with R = H allows removing the tosylamide acidic hydrogen, giving rise to a ferrocenyl amidophosphine ligand coordinated in a bidentate fashion (κ 2P,N). All complexes have been fully characterized by multinuclear NMR and mass spectrometry. The structure of the iridium complex, determined by X-ray diffraction, shows a planar nitrogen atom and a stable metal-centered chirality. Only the most stable diastereoisomer, according to DFT calculations, has been observed. A number of these complexes were assessed in the catalytic transfer hydrogenation and asymmetric transfer hydrogenation of acetophenone. © 2012 American Chemical Society.
UR - https://dialnet.unirioja.es/servlet/articulo?codigo=5204944
UR - http://dialnet.unirioja.es/servlet/articulo?codigo=5204944
UR - https://www.scopus.com/pages/publications/84866683794
U2 - 10.1021/om300738q
DO - 10.1021/om300738q
M3 - Article
SN - 0276-7333
VL - 31
SP - 6669
EP - 6680
JO - Organometallics
JF - Organometallics
IS - 18
ER -