TETRAARYL-METHANE ANALOGS IN GROUP-14-4 - PH(4-N)M(P-TOL)(N) (N=0-4, M=SI,GE,SN,PB) - SYNTHESIS, STRUCTURAL AND SPECTROSCOPIC DATA, AND SEMIEMPIRICAL CALCULATIONS - MUTUAL INTERACTION OF TETRAHEDRAL SIGMA-ORBITALS (SYMMETRY AND ELECTRONEGATIVITY AND DELOCALIZED SIGMA-LUMOS (PI-LEWIS ACIDITY)
Citation
M. Charisse et al., TETRAARYL-METHANE ANALOGS IN GROUP-14-4 - PH(4-N)M(P-TOL)(N) (N=0-4, M=SI,GE,SN,PB) - SYNTHESIS, STRUCTURAL AND SPECTROSCOPIC DATA, AND SEMIEMPIRICAL CALCULATIONS - MUTUAL INTERACTION OF TETRAHEDRAL SIGMA-ORBITALS (SYMMETRY AND ELECTRONEGATIVITY AND DELOCALIZED SIGMA-LUMOS (PI-LEWIS ACIDITY), Polyhedron, 14(17-18), 1995, pp. 2429-2439
Categorie Soggetti
Chemistry Inorganic & Nuclear",Crystallography
SICI code
0277-5387(1995)14:17-18<2429:TAIG-P>2.0.ZU;2-A
Abstract
The 20 compounds mentioned in the title have been synthesized by lithi
um (M = Si) or Grignard methods (M = Ge, Sn, Pb). The crystal structur
e of Ph(3)Sn(p-Tol), a survey of the 10 known structures and spectrosc
opic data (NMR, Mossbauer, IR, Raman) are given. A change of the symme
try of the formally tetrahedral MC(4) backbone arises if M = Si and Ge
(elongation along one S-4 or C-3 axis) are altered to M = Sn and Pb (
contraction along one S-4 axis). The order of delta(C-13-ipso) points
to a decrease in the electronegativities along Pb much greater than Sn
> Ge > Si. The Si-29, Sn-119 and (207)pb NMR chemical shifts exhibit
a ''sagging'' along each series, which is described analytically in te
rms of a quadratic equation. The linear part of this equation is inter
preted as an inductive contribution which changes its sign if M is cha
nged from silicon to tin and lead. The quadratic part reflects the dif
ferent population of a low-lying LUMO with charge given by the aromati
c groups. This LUMO is slightly antibonding in the case of silicon and
slightly bonding for tin and lead. The ''pi-acceptor'' properties of
M explain the upfield NMR shifts Si-29/Sn-119/(207)pb of MAryl(4) comp
ounds in comparison with MAlkyl(4).