CHEM 203 Lecture Notes - Lecture 25: Steric Effects, Elimination Reaction, Phenyl Group

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8 Apr 2015
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Principle: steric hindrance around the nucleophile, as well as the substrate, disfavors substitution and favors elimination. Poor nucleophilicity and good basicity of potassium tert-butoxide. Sterically hindered alkoxides such as potassium tert-butoxide as effective bases for e2 reactions of alkyl halides, even primary ones: Ch3 the tert-butoxide ion is too hindered to function as a nucleophile: it only expresses basic reactivity (=proton affinity) toward the halide. Stereoelectronic control during a reaction: the fact that the reaction requires a particular orbital orientation in order to occur. Some consequences of the stereoelectronic properties of the e2 reaction: Br phenyl group (ph): the alkyl group derived from benzene. = 180 : e2 can occur only from this conformation. Principle: hindered alkyl halides, such as tertiary ones, cannot undergo substitution by the sn2 mechanism, but they can do so by alternative mechanisms. Possible dissociation of alkyl halides to give a carbocation plus a halide ion (analogous to the dissociation of h x):

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