Binuclear Ethylene-Bridged Silicon Chelates: Equilibrium between Neutral Hexacoordinate and Ionic Pentacoordinate Siliconium Complexes

Inna Kalikhman, Vijeyakumar Kingston, Daniel Kost, Dietmar Stalke, Bernhard Walfort

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

Binuclear hexacoordinate silicon complexes with two N→Si dative bonds (per Si atom) have been prepared. The crystal structure conforms to a distorted octahedron, with the N→Si bonds trans to each other. The binuclear complex undergoes Si-Cl dissociation of one Si–Cl bond in CD2Cl2 and CDCl3 solution, to form a binuclear, monosiliconium chloride salt, in reversible equilibrium with its precursor. The dissociation and equilibrium reactions are observed by variable-temperature 29Si NMR spectra. The extent of ionic dissociation increases as the temperature is decreased. The equilibrium population ratio is shifted completely to the di-ionic side at room temperature, by replacement of the chloride by the less nucleophilic triflate anion. The crystal structure of a disiliconium ditriflate shows a) well separated ions, b) that the geometry about silicon is almost an exact square pyramid, and c) that the N→Si bonds are among the shortest coordination bonds of this kind.

Original languageEnglish
Title of host publicationOrganosilicon Chemistry V
Subtitle of host publicationFrom Molecules to Materials
Publisherwiley
Pages61-65
Number of pages5
ISBN (Electronic)9783527619924
ISBN (Print)3527306706, 9783527306701
DOIs
StatePublished - 1 Jan 2008

Keywords

  • Binuclear silicon complexes
  • Hexacoordinate silicon
  • Siliconium cations

ASJC Scopus subject areas

  • General Chemistry

Fingerprint

Dive into the research topics of 'Binuclear Ethylene-Bridged Silicon Chelates: Equilibrium between Neutral Hexacoordinate and Ionic Pentacoordinate Siliconium Complexes'. Together they form a unique fingerprint.

Cite this