Organic Chemistry: Principles And Mechanisms
Organic Chemistry: Principles And Mechanisms
2nd Edition
ISBN: 9780393663549
Author: KARTY, Joel
Publisher: W. W. Norton and Company
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Chapter 12, Problem 12.7P
Interpretation Introduction

Interpretation:

The structure of the initial alkene, which could have been used in the reaction with molecular chlorine in carbon tetrachloride yielding a racemic mixture of

(R, R)- 3, 4 - dichloro - 2 - methylhexane and its enantiomer, is to be drawn.

Concept introduction:

Alkene reacts with molecular halide in carbon tetrachloride (CCl4) to yield a mixture of dihaloalkanes. Molecular halide undergoes anti addition across a carbon-carbon double bond. To account for the stereochemistry of the reaction, the mechanism must proceed through a cyclic halonium ion intermediate. If the mixture of products is diastereomers, then the mixture would be optically active. If the products are either enantiomers or a meso compound, then the mixture is optically inactive. A symmetrically substituted alkene may yield a meso compound, which would be optically inactive.

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Done 11:14 ⚫ worksheets.beyondlabz.com 5 (a). Using the peak information you listed in the tables for both structures, assign each peak to that portion of the structure that produces the peak in the NMR spectrum. Draw this diagram on your own sheet of paper and attach the sketch of your drawing to this question. Question 6 5 (b). Using the peak information you listed in the tables for both structures, assign each peak to that portion of the structure that produces the peak in the NMR spectrum. Draw this diagram on your own sheet of paper and attach the sketch of your drawing to this question. Question 7 6. Are there any differences between the spectra you obtained in Beyond Labz and the predicted spectra? If so, what were the differences? <
2. Predict the NMR spectra for each of these two compounds by listing, in the NMR tables below, the chemical shift, the splitting, and the number of hydrogens associated with each predicted peak. Sort the peaks from largest chemical shift to lowest. **Not all slots must be filled** Peak Chemical Shift (d) 5.7 1 Multiplicity multiplate .......... 5.04 double of doublet 2 4.98 double of doublet 3 4.05 doublet of quartet 4 5 LO 3.80 quartet 1.3 doublet 6 Peak Chemical Shift (d) Multiplicity

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Organic Chemistry: Principles And Mechanisms

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