Comparison of Steric and Electronic Requirements for C−C and C−H Bond Activation. Chelating vs Nonchelating Case
- 25 August 2001
- journal article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 123 (37) , 9064-9077
- https://doi.org/10.1021/ja016126t
Abstract
C-H bond activation was observed in a novel PCO ligand 1 (C(6)H(CH(3))(3)(CH(2)OCH(3))(CH(2)P(t-Bu)(2))) at room temperature in THF, acetone, and methanol upon reaction with the cationic rhodium precursor, [Rh(coe)(2)(solv)(n)()]BF(4) (solv = solvent; coe = cyclooctene). The products in acetone (complexes 3a and 3b) and methanol (complexes 4a and 4b) were fully characterized spectroscopically. Two products were formed in each case, namely those containing uncoordinated (3a and 4a) and coordinated (3b and 4b) methoxy arms, respectively. Upon heating of the C-H activation products in methanol at 70 degrees C, C-C bond activation takes place. Solvent evaporation under vacuum at room temperature for 3-4 days also results in C-C activation. The C-C activation product, ((CH(3))Rh(C(6)H(CH(3))(2)(CH(2)OCH(3))(CH(2)P(t-Bu)(2))BF(4)), was characterized by X-ray crystallography, which revealed a square pyramidal geometry with the BF(4)(-) anion coordinated to the metal. Comparison to the structurally similar and isoelectronic nonchelating Rh-PC complex system and computational studies provide insight into the reaction mechanism. The reaction mechanism was studied computationally by means of a two-layer ONIOM model, using both the B3LYP and mPW1K exchange-correlation functionals and a variety of basis sets. Polarization functions significantly affect relative energetics, and the mPW1K profile appears to be more reliable than its B3LYP counterpart. The calculations reveal that the electronic requirements for both C-C and C-H activation are essentially the same (14e intermediates are the key ones). On the other hand, the steric requirements differ significantly, and chelation appears to play an important role in C-C bond activation.Keywords
This publication has 47 references indexed in Scilit:
- Exclusive C−C Activation in the Rhodium(I) PCN Pincer Complex. A Computational StudyOrganometallics, 2001
- Benchmark ab Initio Energy Profiles for the Gas-Phase SN2 Reactions Y- + CH3X → CH3Y + X- (X,Y = F,Cl,Br). Validation of Hybrid DFT MethodsThe Journal of Physical Chemistry A, 2001
- On the integration accuracy in molecular density functional theory calculations using Gaussian basis setsComputer Physics Communications, 2001
- Solvent-Controlled Selectivity toward Exclusive C−C or C−H Bond Activation by a Cationic Metal CenterJournal of the American Chemical Society, 1999
- Exchange functionals with improved long-range behavior and adiabatic connection methods without adjustable parameters: The mPW and mPW1PW modelsThe Journal of Chemical Physics, 1998
- A PCN Ligand System. Exclusive C−C Activation with Rhodium(I) and C−H Activation with Platinum(II)Organometallics, 1997
- Theoretical study of the activation of alkane carbon-hydrogen and carbon-carbon bonds by different transition metalsJournal of the American Chemical Society, 1991
- Metal complexes of weakly coordinating anions. Precursors of strong cationic organometallic Lewis acidsChemical Reviews, 1988
- Intermolecular interactions from a natural bond orbital, donor-acceptor viewpointChemical Reviews, 1988
- Ab initio effective core potentials for molecular calculations. Potentials for K to Au including the outermost core orbitalsThe Journal of Chemical Physics, 1985