Di(2-pyridyl)-amides and -phosphides: Syntheses, reactivity, structures, Raman-experiments and calculations

Citation
M. Pfeiffer et al., Di(2-pyridyl)-amides and -phosphides: Syntheses, reactivity, structures, Raman-experiments and calculations, J MOL MODEL, 6(2), 2000, pp. 299-311
Citations number
53
Categorie Soggetti
Chemistry & Analysis",Chemistry
Journal title
JOURNAL OF MOLECULAR MODELING
ISSN journal
16102940 → ACNP
Volume
6
Issue
2
Year of publication
2000
Pages
299 - 311
Database
ISI
SICI code
1610-2940(2000)6:2<299:DA-SRS>2.0.ZU;2-T
Abstract
The 2-pyridyl containing compounds (2-Py)(2)NH1, (2-Py)(2)PH 2, Me2Al(2-Py) (2)N 3, Me2Al(2-Py)(2)P 4, Et2Al(2-Py)(2)N 5, Et2Al(2-Py)(2)P 6 and Et2Al(2 -Py)(2)NAlEt3 7 have been synthesized and analyzed by solid state structure determination, FT-Raman spectroscopy and theoretical calculations in order to elucidate the charge density distribution. All di(2-pyridyl) amides and -phosphides coordinate the R2Al+ fragment via both ring nitrogen atoms, bu t the Lewis basicity of the central two-coordinated nitrogen atom in 5 is h igh enough to coordinate a second equivalent AlEt3 to form the Lewis acid b ase adduct Et2Al(2-Py)(2)NAlEt3 7. Several density functionals (BLYP, B3LYP , BPW91) have been examined in relation to various basis sets (6-31G, 6-31G, 6-31G(d), 6-31+G(d)). This computational tool facilitates the unambiguou s assignment of the Raman ring vibration frequencies. The shift to higher w avenumbers proceeding from the parent di(2-pyridyl)amine 1 and di(2-pyridyl )-phosphane 2 to the metal complexes 3 and 4 indicates partial double bond localization in the ring positions 3 and 5. This effect is more pronounced in the di(2-pyridyl)amide complexes than in the phosphide. Due to the highe r electronegativity of the central nitrogen atom in 3, 5 and 7 compared to the bridging two-coordinated phosphorus atom in 4 and 6 the di(2-pyridyl) a mide is the harder Lewis base. In the phosphides nearly all charge density couples into the rings leaving the central phosphorus atom only attractive for soft metals.