The relativistic effects for the quantum mechanical oxidative addition reactions of palladium on C-H, C-C and C-Cl bonds was studied using density functional theory (DFT). Relativistic stabilization of transition states for oxidative insertion was studied by analyzing activation energies in terms of activation strain and the transition interaction between deformed reactants in the activated complex. The discrepancies in experimental and theoretical values of activation energy was attributed to the combined effect of an underestimation of barriers by DFT and the uncertainty of a few kcal/mole in the ab initio calculations
To obtain a state-of-the-art benchmark potential energy surface (PES) for the archetypal oxidative a...
Theoretical studies on the chemical bonding in palladium complexes and mechanistic aspect on palladi...
none4noSignificant recent developments in homogeneous palladium catalysis for selective aerobic oxid...
We have studied the oxidative addition of the methane C-H and chloromethane C-Cl bonds to a number o...
We have computed a state-of-the-art benchmark potential energy surface (PES) for the archetypal oxid...
We have quantum chemically explored arylic carbon-substituent bond activation via oxidative insertio...
We investigate palladium-induced activation of the C-H, C-C, C-F, and C-Cl bonds in methane, ethane,...
Density functional theory calculations were carried out to study the relative easiness of oxidative ...
A series of density functional theory calculations have been employed to study the Pd<sup>IV</sup>-m...
The influence of the nature of the para substituent (Y) and halide (X = Cl, Br, I) of an aryl halide...
We have quantum chemically studied the palladium-mediated activation of C(spn)−X bonds (n=1–3; X=F, ...
We have studied the palladium-mediated activation of C(spn)−X bonds (n = 1–3 and X = H, CH3, Cl) in ...
We have quantum chemically studied activation of HnA-AHn bonds (AHn = CH3, NH2, OH, F) by PdLn catal...
Reductive elimination of C-Cl and C-C bonds from binuclear organopalladium complexes containing Pd-P...
Theoretically calculated xyz files for hydrogen, carbon monoxide, carbon dioxide, methane, methanol,...
To obtain a state-of-the-art benchmark potential energy surface (PES) for the archetypal oxidative a...
Theoretical studies on the chemical bonding in palladium complexes and mechanistic aspect on palladi...
none4noSignificant recent developments in homogeneous palladium catalysis for selective aerobic oxid...
We have studied the oxidative addition of the methane C-H and chloromethane C-Cl bonds to a number o...
We have computed a state-of-the-art benchmark potential energy surface (PES) for the archetypal oxid...
We have quantum chemically explored arylic carbon-substituent bond activation via oxidative insertio...
We investigate palladium-induced activation of the C-H, C-C, C-F, and C-Cl bonds in methane, ethane,...
Density functional theory calculations were carried out to study the relative easiness of oxidative ...
A series of density functional theory calculations have been employed to study the Pd<sup>IV</sup>-m...
The influence of the nature of the para substituent (Y) and halide (X = Cl, Br, I) of an aryl halide...
We have quantum chemically studied the palladium-mediated activation of C(spn)−X bonds (n=1–3; X=F, ...
We have studied the palladium-mediated activation of C(spn)−X bonds (n = 1–3 and X = H, CH3, Cl) in ...
We have quantum chemically studied activation of HnA-AHn bonds (AHn = CH3, NH2, OH, F) by PdLn catal...
Reductive elimination of C-Cl and C-C bonds from binuclear organopalladium complexes containing Pd-P...
Theoretically calculated xyz files for hydrogen, carbon monoxide, carbon dioxide, methane, methanol,...
To obtain a state-of-the-art benchmark potential energy surface (PES) for the archetypal oxidative a...
Theoretical studies on the chemical bonding in palladium complexes and mechanistic aspect on palladi...
none4noSignificant recent developments in homogeneous palladium catalysis for selective aerobic oxid...