ORG CHEM W/ EBOOK & SW5 + STUDY GUIDE
ORG CHEM W/ EBOOK & SW5 + STUDY GUIDE
2nd Edition
ISBN: 9780393666144
Author: KARTY
Publisher: NORTON
Question
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Chapter 12, Problem 12.54P
Interpretation Introduction

(a)

Interpretation:

How the given compound can be produced from an alkene using the appropriate deuterated reagents and solvent in a hydroboration-oxidation reaction is to be shown.

Concept introduction:

The hydroboration-oxidation reaction of an alkene is the overall syn addition of the water molecule across the double bond via anti-Markovnikov regiochemistry. The first step of the mechanism is the syn addition of borane across the carbon-carbon double bond. A deuteron from borane is added to the more substituted carbon of the double bond, and the remaining fragment is added to the less substituted carbon to form alkyl borane. The second step is the conversion of the alkyl borane to alkyl borate ester by the action of alkaline H2O2. The final step is the hydrolysis of alkyl borate ester by the solvent.

Interpretation Introduction

(b)

Interpretation:

How the given compound can be produced from an alkene using appropriate deuterated reagent and solvent in a hydroboration-oxidation reaction is to be shown.

Concept introduction:

The hydroboration-oxidation reaction of an alkene is the overall syn addition of the water molecule across the double bond via anti-Markovnikov regiochemistry. The first step of the mechanism is the syn addition of BH3 across the carbon-carbon double bond. A proton from BH3 is added to the more substituted carbon of the double bond and the remaining fragment is added to the less substituted carbon to form alkyl borane. The second step is the conversion of the alkyl borane to alkyl borate ester by the action of alkaline H2O2. The final step is the hydrolysis of alkyl borate ester by the solvent.

Interpretation Introduction

(c)

Interpretation:

How the given compound can be produced from an alkene using appropriate deuterated reagents and solvent in a hydroboration-oxidation reaction is to be shown.

Concept introduction:

The hydroboration-oxidation reaction of an alkene is the overall syn addition of the water molecule across the double bond via anti-Markovnikov regiochemistry. The first step of the mechanism is the syn addition of borane across the carbon-carbon double bond. A deuteron from borane is added to the more substituted carbon of the double bond and the remaining fragment is added to the less substituted carbon to form alkyl borane. The second step is the conversion of alkyl borane to alkyl borate ester by the action of alkaline H2O2. The final step is the hydrolysis of alkyl borate ester by the solvent.

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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

Chapter 12 Solutions

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