The reaction of BeCl2 with carbodiphosphorane C(PPh 3)2; Experimental and theoretical studies

Wolfgang Petz, Kurt Dehnicke, Nicole Holzmann, Gernot Frenking, Bernhard Neumüller

Research output: Contribution to journalArticlepeer-review

46 Scopus citations

Abstract

The use of 2-Br-fluorobenzene as the solvent permitted the isolation of the addition compound [Cl2Be(C{PPh3}2)] (5) from the reaction of the carbodiphosphorane 1 (carbon) with BeCl2 featuring a three coordinate beryllium atom. In other solvents such as THF, DCM, etc. deprotonation occurs with formation of the cations (HC{PPh 3}2)+ or (H2C{PPh3} 2)2+. Compound 5 was characterized by an X-ray diffraction analysis. The analysis of the bonding situation in Cl2Be←1 reveals that the orbital donation comes mainly from the σ lone-pair orbital of 1, whereas the π donation is rather weak. However, the Cl 2Be←1 π donation appears strong enough to make the donation of a second donor species 1 unfavorable. The calculation of 1→Cl 2Be←1 shows that the latter complex is higher in energy than 1→Cl2Be and free 1. The carbodiphosphorane may bind, albeit weakly, a second BeCl2 species in the complex Cl2Be← 1→BeCl2. The bond dissociation energies for the first and second BeCl2 fragments are De = 31.8 kcal·mol -1 and 7.0 kcal·mol-1. The dimerization of Cl 2Be←1 is energetically slightly endoenergetic.

Original languageEnglish
Pages (from-to)1702-1710
Number of pages9
JournalZeitschrift fur Anorganische und Allgemeine Chemie
Volume637
Issue number12
DOIs
StatePublished - Oct 2011
Externally publishedYes

Keywords

  • Beryllium compounds
  • Bonding analysis
  • Carbodiphosphorane adducts
  • Donor-acceptor complex
  • X-ray diffraction

Fingerprint

Dive into the research topics of 'The reaction of BeCl2 with carbodiphosphorane C(PPh 3)2; Experimental and theoretical studies'. Together they form a unique fingerprint.

Cite this