Steric Effects in Electron Transfer from Potassium to π-Bonded Oriented Molecules CH3CN, CH3NC, and CCl3CN

Electron transfer from K atoms to oriented CH3CN, CH3NC, and CCl3CN is studied in crossed beams at energies near the threshold for forming an ion pair. For the methyl compounds, the dominant ions are K+ and CN-; the steric asymmetry is very small and energy-independent, characteristic of sideways at...

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Veröffentlicht in:Journal of the American Chemical Society 2007-12, Vol.129 (50), p.15572-15580
Hauptverfasser: Brooks, Philip R, Harland, Peter W, Harris, Sean A, Kennair, Terry, Redden, Crystal, Tate, Jack F
Format: Artikel
Sprache:eng
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Zusammenfassung:Electron transfer from K atoms to oriented CH3CN, CH3NC, and CCl3CN is studied in crossed beams at energies near the threshold for forming an ion pair. For the methyl compounds, the dominant ions are K+ and CN-; the steric asymmetry is very small and energy-independent, characteristic of sideways attack with the electron apparently entering the π*CN antibonding orbital. Migration of the electron to the σ*CC orbital to break the C−C bond is greatly facilitated by interaction with the atomic donor. CH2CN- is formed in collisions preferring CH3-end attack, and the steric asymmetry becomes very large near threshold. CCl3CN mostly forms Cl- in collisions slightly favoring the CCl3 end with a small energy dependence with the electron apparently entering the σ* LUMO. CN- is formed in much smaller yield with a slight preference for the CN end. The parent negative ion CCl3CN- is observed, and a lower limit for its electron affinity is estimated to be 0.3 eV. Fragment ions CCl2CN- and CClCN- are also observed with upper limits for the quantity bond dissociation energy − electron affinity (BDE − EA) estimated to be 0.6 and 1.0 eV, respectively.
ISSN:0002-7863
1520-5126
DOI:10.1021/ja074302d