CHEM 2443 Lecture Notes - Lecture 25: Steric Effects, Nucleophilic Substitution, Sn2 Reaction

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12 Aug 2016
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Nucleophilic aliphatic substitution: the na in the reaction is just along for the ride", aliphatic = sp3-hybridized carbon. Reacting with primarily alkyl halides: nucleophile replacing another atom or group, cl, br, and i will (for our intents and purposes) will react the same in nucleophilic aliphatic substitution reactions, sn2. Rate of reaction depends on both the nucleophile and the halide. Requires a collision; nucleophile must collide with the positive carbon of the alkyl halide (the carbon bearing the leaving group: carbons will always be sp3-hybridized here, no mechanism for these reactions; no intermediate. Reaction still has to be described based on transition state. Not formally a mechanism; but transition state is mechanistic. Walden cycle/walden inversion: if there are certain reactions with a halide; you can convert an alcohol to a halide with retention or with inversion. Inversion 100% inverted configuration: sn2 reactions occur with inversion and backside attack. Backside attack: if iodide approaches over bromine.

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