R. Tacke et al., NEW ZWITTERIONIC LAMBDA(5)-SPIROSILICATES - SYNTHESES, SINGLE-CRYSTALX-RAY STRUCTURE ANALYSES, AND SOLID-STATE NMR-STUDIES, Chemische Berichte, 126(4), 1993, pp. 851-861
The zwitterionic spirocyclic lambda5-silicates benzenediolato(2-)][2-(
pyrrolidinio)ethyl]silicate (5; and its monohydrate 5 - H2O) and zened
iolato(2-)]-[(dimethylammonio)methyl]silicate (6) were synthesized by
various methods including Si - C bond cleavage reactions. The crystal
structures of 5, 5 . H2O, and 6 were investigated by X-ray diffraction
. Furthermore, 5, 5 . H2O, 6, and the related zwitterionic lambda5-spi
rosilicates 1 - 1/4 CH3CN, 2 - CH3CN, 3 . CH3CN, and 4 were characteri
zed by solid-state NMR spectroscopy (Si-29 and N-15 CP/MAS). The penta
coordinate silicon atoms of 5, 5 . H2O (two crystallographically indep
endent zwitterions and two crystallographically independent water mole
cules), and 6 (two crystallographically independent zwitterions) are s
urrounded by four oxygen atoms and one carbon atom. The coordination p
olyhedrons around the silicon atoms of 5 and 6 can be described as dis
torted (5) or nearly ideal (6) trigonal bipyramids, the carbon atoms b
eing in equatorial positions. 5 forms intramolecular and 6 intermolecu
lar (--> formation of dimeric units) N - H ... O hydrogen bonds. The c
oordination polyhedrons around the two crystallographically independen
t silicon atoms of 5 - H2O can be described as a nearly ideal and slig
htly distorted square pyramid, respectively, the carbon atoms being in
the apical positions. In the crystal lattice of 5 . H2O, intermolecul
ar N-H ... O and O-H ... O hydrogen bonds between the zwitterions and
water molecules are observed. The results obtained by X-ray diffractio
n and solid-state NMR spectroscopy are consistent for each compound st
udied.