Dinuclear metal systems based on sterically-hindered, three-coordinate transition metal complexes of the type ML3 where the ancillary ligands L comprise bulky organic substituents, hold great promise synthetically for the activation and scission of small, multiply-bonded molecules such as N2, NO and N2O. In this study we have employed density functional methods to identify the metal/ligand combinations which achieve optimum activation and/or cleavage of N2. Strong π donor ligands such as NH2 and OH are found to produce the greatest level of activation based on N-N bond lengths in the intermediate dimer complex, L 3Mo(μ-N2)MoL3, whereas systems containing the weak or non-π donor ligands NH3, PH3, OH 2 and SH2 are found to be thermodynamicall...
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...
The activation and cleavage of the N-N bond in side-on bound [L 2M-NN-ML 2] (L = NH 2, NMe 2, N iPr ...
Molecular orbital theory has been used to study a series of [(μ-N 2)-{ML3}2] complexes as models for...
The sterically hindered, three-coordinate metal systems M[N(R)Ar] 3 (R = tBu, iPr; Ar = 3,5-C6H 3Me2...
Density functional calculations have been employed to rationalize why the heteronuclear N2-bridged M...
Obtaining an accurate theoretical model for the activation of dinitrogen by three-coordinate molybde...
The activation and scission of the N–O bond in nitric oxide using dinuclear mixed-metal species, com...
Density functional calculations have been employed to rationalize why the heteronuclear N2-bridged M...
The analysis described herein applies density functional theory to the activation and scission of th...
The analysis described herein applies density functional theory to the activation and scission of th...
This review presents a comprehensive overview of the reactions of N-2 within the coordination sphere...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2002.Vita.Includes biblio...
Earlier calculations on the model N2-bridged dimer (µ-N2)-{Mo[NH2]3}2 revealed that ligand rotation ...
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...
The activation and cleavage of the N-N bond in side-on bound [L 2M-NN-ML 2] (L = NH 2, NMe 2, N iPr ...
Molecular orbital theory has been used to study a series of [(μ-N 2)-{ML3}2] complexes as models for...
The sterically hindered, three-coordinate metal systems M[N(R)Ar] 3 (R = tBu, iPr; Ar = 3,5-C6H 3Me2...
Density functional calculations have been employed to rationalize why the heteronuclear N2-bridged M...
Obtaining an accurate theoretical model for the activation of dinitrogen by three-coordinate molybde...
The activation and scission of the N–O bond in nitric oxide using dinuclear mixed-metal species, com...
Density functional calculations have been employed to rationalize why the heteronuclear N2-bridged M...
The analysis described herein applies density functional theory to the activation and scission of th...
The analysis described herein applies density functional theory to the activation and scission of th...
This review presents a comprehensive overview of the reactions of N-2 within the coordination sphere...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 2002.Vita.Includes biblio...
Earlier calculations on the model N2-bridged dimer (µ-N2)-{Mo[NH2]3}2 revealed that ligand rotation ...
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...