Organic Chemistry
Organic Chemistry
7th Edition
ISBN: 9780321803078
Author: Bruice, Paula Yurkanis
Publisher: Pearson College Div
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Chapter 9, Problem 59P

(a)

Interpretation Introduction

Interpretation:

The stereoisomeric products of (3S, 4S)-3-bromo-4-methylhexane in SN2 reaction with methoxide base should be drawn.

Concept Introduction:

Primary alkyl halide undergoes SN2/E2 reaction: the substitution reaction is favored unless the nucleophile is sterically hindered.

Secondary alkyl halide undergoes SN2/E2 reaction: both the substitution and elimination products reaction are formed. Strong bases bulky bases and high temperature favors the elimination product.

(b)

Interpretation Introduction

Interpretation:

The stereoisomeric products of (3S, 4R)-3-bromo-4-methylhexane in SN2 reaction with methoxide base should be drawn.

Concept Introduction:

Primary alkyl halide undergoes SN2/E2 reaction: the substitution reaction is favored unless the nucleophile is sterically hindered.

Secondary alkyl halide undergoes SN2/E2 reaction: both the substitution and elimination products reaction are formed. Strong bases bulky bases and high temperature favors the elimination product.

(c)

Interpretation Introduction

Interpretation:

The stereoisomeric products of (3R, 4R)-3-bromo-4-methylhexane in SN2 reaction with methoxide base should be drawn.

Concept Introduction:

Primary alkyl halide undergoes SN2/E2 reaction: the substitution reaction is favored unless the nucleophile is sterically hindered.

Secondary alkyl halide undergoes SN2/E2 reaction: both the substitution and elimination products reaction are formed. Strong bases bulky bases and high temperature favors the elimination product.

(d)

Interpretation Introduction

Interpretation:

The stereoisomeric products of (3R, 4S)-3-bromo-4-methylhexane in SN2 reaction with methoxide base should be drawn.

Concept Introduction:

Primary alkyl halide undergoes SN2/E2 reaction: the substitution reaction is favored unless the nucleophile is sterically hindered.

Secondary alkyl halide undergoes SN2/E2 reaction: both the substitution and elimination products reaction are formed. Strong bases bulky bases and high temperature favors the elimination product.

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When 2-bromo-3-phenylbutane is treated with sodium methoxide, two alkenes result (by E2 elimination). The Zaitsevproduct predominates.(a) Draw the reaction, showing the major and minor products.(b) When one pure stereoisomer of 2-bromo-3-phenylbutane reacts, one pure stereoisomer of the major product results.For example, when (2R,3R)-2-bromo-3-phenylbutane reacts, the product is the stereoisomer with the methyl groups cis.Use your models to draw a Newman projection of the transition state to show why this stereospecificity is observed.(c) Use a Newman projection of the transition state to predict the major product of elimination of (2S,3R)-2-bromo-3-phenylbutane
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