The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products, N–MoL3, L3Mo–N–MoL3 or Mo2L6, depending on the nature of the ligand L. The energetics of the different reaction pathways are compared for L = NH2, NMe2, N(iPr)Ar and N(tBu)Ar (Ar = 3,5-C6H3Me2) using density functional methods in order to rationalize the experimental results. Overall, the exothermicity of each reaction pathway decreases as the ligand size increases, largely due to the increased steric crowding in the products compared to reactants. In the absence of steric strain, the formation of the metal–metal bonded dimer, Mo2L6, is the most exothermic pathway but this reaction shows the greatest sensitivity to ligand size varying from s...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products,...
The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products,...
The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products,...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
[[abstract]]Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products,...
The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products,...
The reaction of N2 with three-coordinate MoL3 complexes is known to give rise to different products,...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...
[[abstract]]Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
Reaction of Mo(N[R]Ar)(3) (R = Bu-t or (CD3)(2)CH3) with N2O gives rise exclusively to a 1: 1 mixtur...
The reaction of MoL3 [L = NH2 and N(tBu)Ar] with CO was explored using DFT in order to rationalize w...
Three-coordinate Mo[N(tBu)Ar]3 binds cyanide to form the intermediate [Ar(tBu)N]3Mo–CN–Mo[N(tBu)Ar]3...