A mass spectrometry study of XCO+, X = Si, Ge : Is SiCO+ a main group carbonyl? Comments on the bonding in ground state SiCO and the Si,C,O (+) potential energy surface


Autoria(s): Jackson, P.; Srinivas, R.; Blanksby, Stephen J.; Schroder, D.; Schwarz, H.
Data(s)

03/04/2000

Resumo

The cation\[Si,C,O](+) has been generated by 1) the electron ionisation (EI) of tetramethoxysilane and 2) chemical ionisation (CI) of a mixture of silane and carbon monoxide. Collisional activation (CA) experiments performed for mass-selected \[Si,C,O](+), generated by using both methods, indicate that the structure is not inserted OSiC+; however, a definitive structural assignment as Si+-CO, Si+-OC or some cyclic variant is impossible based on these results alone. Neutralisation-reionisation (+NR+) experiments for EI-generated \[Si,C,O](+) reveal a small peak corresponding to SiC+, but no detectable SiO+ signal, and thus establishes the existence of the Si+-CO isomer. CCSD(T)//B3LYP calculations employing a triple-zeta basis set have been used to explore the doublet and quartet potential-energy surfaces of the cation, as well as some important neutral states The results suggest that both Si+-CO and Si+ - OC isomers are feasible; however, the global minimum is (2)Pi SiCO+. Isomeric (2)Pi SiOC+ is 12.1 kcal mol(-1) less stable than (2)Pi SiCO+, and all quartet isomers are much higher in energy. The corresponding neutrals Si-CO and Si-OC are also feasible, but the lowest energy Si - OC isomer ((3)A") is bound by only 1.5 kcal mol(-1). We attribute most, if nor all, of the recovery signal in the +NR' experiment to SiCO+ survivor ions. The nature of the bonding in the lowest energy isomers of Si+ -(CO,OC) is interpreted with the aid of natural bond order analyses, and the ground stale bonding of SiCO+ is discussed in relation to classical analogues such as metal carbonyls and ketenes.

Identificador

http://eprints.qut.edu.au/71934/

Publicador

Wiley - V C H Verlag GmbH & Co. KGaA

Relação

http://onlinelibrary.wiley.com/doi/10.1002/(SICI)1521-3765(20000403)6:7%3C1236::AID-CHEM1236%3E3.0.CO;2-3/pdf

DOI:10.1002/(sici)1521-3765(20000403)6:7<1236::aid-chem1236>3.3.co;2-v

Jackson, P., Srinivas, R., Blanksby, Stephen J., Schroder, D., & Schwarz, H. (2000) A mass spectrometry study of XCO+, X = Si, Ge : Is SiCO+ a main group carbonyl? Comments on the bonding in ground state SiCO and the Si,C,O (+) potential energy surface. Chemistry-a European Journal, 6(7), pp. 1236-1242.

Direitos

Copyright © 2000 WILEY-VCH Verlag GmbH, Weinheim, Fed. Rep. of Germany

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Palavras-Chave #ab initio calculations #carbonyl complexes #germanium #interstellar #molecules #mass spectrometry #silicon #gaussian-basis sets #correlated molecular calculations #electron-spin-resonance #orbital methods #monoxide #atoms #chemistry #spectra
Tipo

Journal Article