Large differences have been found between the mass spectra of cis- and trans-1-carbomethoxy-2-trimethylsilycyclopropane. To help in explaining these differences, quantum chemical calculations were performed by the MNDO method on the neutral molecules, on the vertical and adiabatic molecular ions and also the [M - methyl]+ ions. To evaluate the results, heats of formation, bond orders, molecular geometry, spin and charge densities and orbital coefficients were used. These indicate the formation of a very strong bonding interaction between silicon and oxygen in the molecular ion of the cis but not the trans isomer, leading to spontaneous methyl loss and a stabilization energy of approximately 2.6 eV.

Stereochemical effects in the mass spectra of some cyclopropylsilanes explained by the MNDO molecular orbital method. I. Silicon-oxygen interactions

1992

Abstract

Large differences have been found between the mass spectra of cis- and trans-1-carbomethoxy-2-trimethylsilycyclopropane. To help in explaining these differences, quantum chemical calculations were performed by the MNDO method on the neutral molecules, on the vertical and adiabatic molecular ions and also the [M - methyl]+ ions. To evaluate the results, heats of formation, bond orders, molecular geometry, spin and charge densities and orbital coefficients were used. These indicate the formation of a very strong bonding interaction between silicon and oxygen in the molecular ion of the cis but not the trans isomer, leading to spontaneous methyl loss and a stabilization energy of approximately 2.6 eV.
1992
Inglese
27
8
869
875
http://onlinelibrary.wiley.com/doi/10.1002/oms.1210270805/abstract;jsessionid=705ECB8250CE4AFF33464E859AC4EE04.f04t01
Sì, ma tipo non specificato
GROUND-STATES; BOND ORDERS; GAS-PHASE; FRAGMENTATIONS; SPECTROMETRY; VALENCES; SHELL
The Journal of Mass Spectrometry is a peer-reviewed scientific journal covering all aspects of mass spectrometry including instrument design and development, ionization processes, mechanisms and energetics of gaseous ion reactions, spectroscopy of gaseous ions, theoretical aspects, ion structure, analysis of compounds of biological interest, methodology development, applications to elemental analysis and inorganic chemistry, computer-related applications and developments, and environmental chemistry and other fields that use innovative aspects of mass spectrometry. It was established in 1968 as Organic Mass Spectrometry and obtained its current title in 1995.
4
info:eu-repo/semantics/article
262
Vékey, Károly; Somogyi, Árpád; Tarnás, József; Pócsfalvi, Gabriella
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/216349
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