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dc.contributor.authorNicolaïdes, Andrew N.en
dc.contributor.authorRadom, L.en
dc.creatorNicolaïdes, Andrew N.en
dc.creatorRadom, L.en
dc.date.accessioned2019-11-21T06:21:43Z
dc.date.available2019-11-21T06:21:43Z
dc.date.issued1996
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/55903
dc.description.abstractHigh-level ab initio calculations on silatropylium (1-Si) and silabenzyl (2-Si) cations and seven of their low-lying isomers (3-8), as well as on their carbon analogues, tropylium (1-C) and benzyl (2-C) cations, are reported. Heats of formation have been calculated at the G2(MP2) level of theory with the help of isodesmic and isogyric reactions. Relative stabilities and hydride affinities are reported using G2(MP2), G2(MP2,SVP), and density functional theory (B3-LYP, B-LYP, and B3-P86) procedures. The calculations confirm the experimental finding that tropylium cation is lower in energy than benzyl cation. The calculated heat of formation for benzyl cation (ΔH8f) 298 = 907 kJ mol-1) is in good agreement with a value derived from recent experimental data but the calculated heat of formation for tropylium cation (ΔH(f) 298 = 878 kJ mol-1) suggests that an experimental re-examination would be desirable. The stability ordering is reversed for the silicon analogues, silatropylium cation (1-Si, ΔH(f) 298 = 980 KJ mol-1) and silabenzyl cation (2-Si, ΔH(f) 298= 942 kJ mol-1), with the latter lying lower in energy by 38 kJ mol-1. Among the isomers that we have examined, the lowest in energy by a considerable margin is (η5-methylcyclopentadienyl)silanium cation (8, ΔH8f) 298 = 839 kJ mol-1). Two other isomers, δ-silabenzyl cation (3, ΔH(f) 298 = 969 kJ mol-1) and (η5-cyclohexadienyl)silanium cation (7, ΔH(f) 298 = 965 kJ mol-1), the intermediate in energy between 2-Si and 1-Si. The implications of our theoretical findings with regard to recent experimental results on the relative stabilities and hydride affinities of the C6SiH7+ isomers in the gas-phase chemistry of silatoluene radical cation are discussed. Our calculated relative energies and hydride affinities suggest 8 as the most likely prospect for the second C6SiH7+ isomer (in addition to 2-Si) observed experimentally.en
dc.sourceJournal of the American Chemical Societyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-0029840204&doi=10.1021%2fja9609664&partnerID=40&md5=06a88c0bb0804bc4e9a06f1b5dc182c6
dc.subjecttheoryen
dc.subjectarticleen
dc.subjectthermodynamicsen
dc.subjectcalculationen
dc.subjectmolecular dynamicsen
dc.subjectdrug stabilityen
dc.subjectionizationen
dc.subjectorganosilicon derivativeen
dc.titleRelative stabilities and hydride affinities of silatropylium and silabenzyl cations and their isomers. Comparison with the carbon analogues tropylium and benzyl cationsen
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1021/ja9609664
dc.description.volume118
dc.description.issue43
dc.description.startingpage10561
dc.description.endingpage10570
dc.author.faculty002 Σχολή Θετικών και Εφαρμοσμένων Επιστημών / Faculty of Pure and Applied Sciences
dc.author.departmentΤμήμα Χημείας / Department of Chemistry
dc.type.uhtypeArticleen
dc.description.notes<p>Cited By :31</p>en
dc.source.abbreviationJ.Am.Chem.Soc.en


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