1985Israel Journal of ChemistryRequires access

The SN2 Transition State. 6: Breakdown of the Reactivity–Selectivity Principle in the SN2 Reaction of α‐Halocarbonyl Compounds. A Molecular Orbital Analysis [1]

Daniel Kost, Kalman Aviram

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Abstract

Abstract A molecular orbital (MO) analysis of the SN2 transition state (TS) of α‐carbonyl derivatives is described with various nucleophile leaving group pairs. On the basis of this analysis it is shown that the enhanced selectivity toward nucleophiles observed in α‐halocarbonyl compounds is directly associated with SN2 rate enhancement. Both observations result from a stabilizing frontier orbital interaction between a high lying π‐type three center orbital along the reaction coordinate axis and the carbonyl π‐system. The magnitude of interaction is greater for more powerful nucleophiles, resulting in both greater reactivity as well as additional selectivity relative to simple alkyl halides.

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Abstract A molecular orbital (MO) analysis of the SN2 transition state (TS) of α‐carbonyl derivatives is described with various nucleophile leaving group pairs. On the basis of this analysis it is shown that the enhanced selectivity toward nucleophiles observed in α‐halocarbonyl compounds is directly associated with SN2 rate enhancement. Both observations result from a stabilizing frontier orbital interaction between a high lying π‐type three center orbital along the reaction coordinate axis and the carbonyl π‐system. The magnitude of interaction is greater for more powerful nucleophiles, resulting in both greater reactivity as well as additional selectivity relative to simple alkyl halides.

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Available abstract

Abstract A molecular orbital (MO) analysis of the SN2 transition state (TS) of α‐carbonyl derivatives is described with various nucleophile leaving group pairs. On the basis of this analysis it is shown that the enhanced selectivity toward nucleophiles observed in α‐halocarbonyl compounds is directly associated with SN2 rate enhancement. Both observations result from a stabilizing frontier orbital interaction between a high lying π‐type three center orbital along the reaction coordinate axis and the carbonyl π‐system. The magnitude of interaction is greater for more powerful nucleophiles, resulting in both greater reactivity as well as additional selectivity relative to simple alkyl halides.

Key concepts: Chemistry, SN2 reaction, Nucleophile, Reactivity (psychology), Selectivity, Molecular orbital, Reaction coordinate, Alkyl

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The SN2 Transition State. 6: Breakdown of the Reactivity–Selectivity Principle in the SN2 Reaction of α‐Halocarbonyl Compounds. A Molecular Orbital Analysis [1] — Research Paper | ScholarLens