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Kinetic and thermodynamic preferences for the diastereoselective oxidative addition of H(2) to trans-Ir(PR(3))(2)(CO)Cl: monodentate chiral phosphines may impart exceptional degrees of diastereoselectivity
Authors:Shin Jun Ho  Parkin Gerard
Institution:Department of Chemistry, Columbia University, New York, New York 10027.
Abstract:Studies on square planar iridium complexes of the type trans-Ir(PR(3))(2)(CO)Cl, where PR(3) is PhP(C(5)Me(4))](2), PhPMe(2)C(4)H(6)], or PhPPr(i)(2)C(4)H(6)], demonstrate that monodentate chiral phosphines impart exceptional degrees of diastereoselectivity in the oxidative addition of H(2). Thus, the oxidative addition of H(2) to the two faces of the meso isomer (R,S)-trans-Ir(PR(3))(2)(CO)Cl proceeds with a kinetic diastereoselectivity which exceeds that for related square planar iridium complexes employing bidentate chiral phosphine ligands. Furthermore, the kinetically favored dihydride is not favored thermodynamically, and the magnitude of the inversion of the kinetic and thermodynamic selectivities is greater than has previously been observed using bidentate phosphines.
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