Title of article :
Conformational flexibility and molecular dynamics of cationic diolefin–rhodium(I) complexes with iminophosphine ligands
Author/Authors :
Bruno Crociani، نويسنده , , Simonetta Antonaroli، نويسنده , , Maria Luisa Di Vona، نويسنده , , Silvia Licoccia، نويسنده ,
Issue Information :
دوفصلنامه با شماره پیاپی سال 2001
Abstract :
In solution, the cationic complexes [Rh(η2,η2-diolefin)(PN)]+ [diolefin=1,5-cyclooctadiene (cod), bicyclo[2.2.1]hepta-2,5-diene (nbd); PN=o-(PPh2)C6H4CHNR (R=C6H3(i-Pr)2-2,6 (1), CMe3 (2), (R)-bornyl (3)] undergo a conformational change of the iminophosphine ligand which inverts the position of the six-membered chelate ring relative to the NRhP coordination plane. The inversion is fast for [Rh(η2,η2-diolefin)(1)]+ and [Rh(η2,η2-diolefin)(3)]+ in the temperature range 298–183 K, and becomes progressively slower for [Rh(η2,η2-diolefin)(2)]+ with increasing steric demand of the coordinated ligands. From the coalescing signals in the 1H-NMR spectrum of [Rh(nbd)(2)]+ at 208 K, a ΔH# value of 28.5 kJ mol−1 and a ΔS# value of −60.3 J K−1 mol−1 can be estimated. The phase-sensitive 2D 1H-NMR ROESY spectrum of [Rh(cod)(3)]+ reveals the presence of another dynamic process which slowly and selectively interconverts the two olefinic protons on the same HCCH unit of the chelate diolefin. A mechanism is proposed involving the initial dissociation of the rhodium–olefin bond trans to phosphorus. Semi-empirical calculations show that in the most stable conformers of [Rh(nbd)(2)]+ and [Rh(cod)(2)]+ the PN chelate ring is not coplanar with the NRhP plane, while the diolefin coordination mode is distorted largely by the steric interaction with the bulky NCMe3 group. When the PN chelate ring is forced to be coplanar with the NRhP plane, the enthalpy content increases to 20.3 and 114.7 kJ mol−1 for [Rh(nbd)(2)]+ and [Rh(cod)(2)]+, respectively. Entropy factors seem to be predominant in the displacement of 1,5-cyclooctadiene by other olefinic ligands in the complexes [Rh(cod)(PN)]+.
Keywords :
H , 2D-exchange NMR , ?2-diolefin)(iminophosphine)]+ , Semi-empirical calculations , Solution dynamics
Journal title :
Journal of Organometallic Chemistry
Journal title :
Journal of Organometallic Chemistry