Organic Chemistry (9th Edition)
Organic Chemistry (9th Edition)
9th Edition
ISBN: 9780321971371
Author: Leroy G. Wade, Jan W. Simek
Publisher: PEARSON
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Chapter 11, Problem 11.39SP

Predict the major products of the following reactions, including stereochemistry where appropriate.

  1. a. (R)-butan-2-ol+TsCI In pyridine
  2. b. (S)-2-butyl tosylate+NaBr
  3. c. cyclooctanol+NaOCI/HOAc
  4. d. cyclopentylmethanol+CrO3·pyridine·HCl
  5. e. cyclopentylmethanol+Na2Cr207/H2SO4
  6. f. cyclopentanol+HCl/ZnCl2
  7. g. n-butanol+HBr
  8. h. cyclooctylmethanol+CH3CH2MgBr
  9. i. potassium tert-butoxide+methyliodide
  10. j. sodium methoxide+tert-butyliodide
  11. k. cyclopentanol+H2SO4/heat
  12. l. product from (k)+OsO4/H2O2, then HIO4
  13. m. sodiumethoxide+1-bromobutane
  14. n. sodiumethoxide+2-methyl-2-bromobutane
  15. ○.      octan-1-ol + DMSO + oxalyl chloride
  16. p. 4-cyclopentylhexan-1-ol + DMP reagent

(a)

Expert Solution
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Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Tosyl chloride in pyridine as a reagent is used to convert alcohols into respective tosylate esters through retention of configuration.

Answer to Problem 11.39SP

The major product of the given reaction is (R)-sec-butyl4-methylbenzenesulfonate.

Explanation of Solution

The given reaction occurs between (R)-butan-2-ol and TsCl in pyridine. Tosyl chloride in pyridine as a reagent is used to convert alcohols into respective tosylate esters through retention of configuration.

The product of the given reaction is shown in Figure 1.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  1

Figure 1

(b)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Sodium bromide is used to convert the compounds of tosylate ester into respective bromide through inversion of configuration.

Answer to Problem 11.39SP

The major product of the given reaction is (R)-2-bromobutane.

Explanation of Solution

The given reaction occurs between (S)-2-butyltosylate and NaBr. Sodium bromide is used to convert the compounds of tosylate ester into respective bromide through inversion of configuration.

The product of the given reaction is shown in Figure 2.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  2

Figure 2

(c)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Sodium hypochlorite with acetic acid (NaOCl/HOAc) is used to convert secondary alcohols into ketones.

Answer to Problem 11.39SP

The major product of the given reaction is cyclooctanone.

Explanation of Solution

The given reaction occurs between cyclooctanol and NaOCl/HOAc. Sodium hypochlorite with acetic acid (NaOCl/HOAc) is used to convert secondary alcohols into ketones.

The product of the given reaction is shown in Figure 3.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  3

Figure 3

(d)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The Jones reagent (CrO3pyridineHCl) is used to convert primary alcohols into aldehyde.

Answer to Problem 11.39SP

The major product of the given reaction is cyclopentanecarbaldehyde.

Explanation of Solution

The given reaction occurs between cyclopentylmethanol and CrO3pyridineHCl. The Jones reagent (CrO3pyridineHCl) is used to convert primary alcohols into aldehyde.

The product of the given reaction is shown in Figure 4.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  4

Figure 4

(e)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The Jones reagent (Na2Cr2O7/H2SO4) is used to convert primary alcohols into carboxylic acids and secondary alcohols into ketone.

Answer to Problem 11.39SP

The major product of the given reaction is cyclopentanecarboxylic acid.

Explanation of Solution

The given reaction occurs between cyclopentylmethanol and Na2Cr2O7/H2SO4. The Jones reagent (Na2Cr2O7/H2SO4) is used to convert primary alcohols into carboxylic acids.

The product of the given reaction is shown in Figure 5.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  5

Figure 5

(f)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The Lucas reagent (HCl/ZnCl2) is used to convert secondary and tertiary alcohols into alkyl chloride.

Answer to Problem 11.39SP

The major product of the given reaction is chlorocyclopentane.

Explanation of Solution

The given reaction occurs between cyclopentanol and HCl/ZnCl2. The Lucas reagent (HCl/ZnCl2) is used to convert secondary and tertiary alcohols into alkyl chloride.

The product of the given reaction is shown in Figure 6.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  6

Figure 6

(g)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The halo acids like HBr,HClandHI are used for halogenations of alcohols.

Answer to Problem 11.39SP

The major product of the given reaction is 1-bromobutane.

Explanation of Solution

The given reaction occurs between n-butanol and HBr. The halo acids like HBr,HClandHI are used for halogenations of alcohols.

The product of the given reaction is shown in Figure 7.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  7

Figure 7

(h)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The reaction of alcohols with Grignard reagent leads to the formation of adduct complex of Grignard.

Answer to Problem 11.39SP

The major product of the given reaction is magnesium bromide cyclooctylmethanolate.

Explanation of Solution

The given reaction occurs between cyclooctylmethanol and CH3CH2MgBr. The reaction of alcohols with Grignard reagent leads to the formation of adduct complex of Grignard.

The product of the given reaction is shown in Figure 8.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  8

Figure 8

(i)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Methyl iodide is used to convert an alkoxide into ether with removal of halo-salts.

Answer to Problem 11.39SP

The major product of the given reaction is 2-methoxy-2-methylpropane.

Explanation of Solution

The given reaction occurs between potassium tert-butoxide and methyliodide. Methyl iodide is used to convert an alkoxide into ether with removal of halogen salts.

The product of the given reaction is shown in Figure 9.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  9

Figure 9

(j)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Sodium methoxide is a strong base, used for the conversion of bulkier haloalkane into an alkene with removal of an alcohol.

Answer to Problem 11.39SP

The major product of the given reaction is 2-methyl-1-propene.

Explanation of Solution

The given reaction occurs between sodium methoxide and tert-butyliodide. Sodium methoxide is a strong base, used for the conversion of bulkier haloalkane into an alkene with the removal of an alcohol.

The product of the given reaction is shown in Figure 10.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  10

Figure 10

(k)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The sulphuric acid catalyzed reaction is used to convert alcohols into an alkene through dehydration and E1 (mostly) and E2 (primary alcohols) mechanisms.

Answer to Problem 11.39SP

The major product of the given reaction is cyclopentene.

Explanation of Solution

The given reaction occurs between cyclopentanol and H2SO4/heat.

The sulphuric acid catalyzed reaction is used to convert alcohols into an alkene through dehydration and E1 (mostly) and E2 (primary alcohols) mechanisms.

The product of the given reaction is shown in Figure 11.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  11

Figure 11

(l)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Osmium tetra oxide (OsO4) is used to convert alkenes into diols. The further reaction of diols with periodic acid leads to the cleavage of diols and formation of aldehydes or ketones.

Answer to Problem 11.39SP

The major product of the given reaction is glutaraldehyde.

Explanation of Solution

The given reaction occurs between cyclopentene (product from k) and OsO4/H2O2.then HIO4. Osmium tetra oxide (OsO4) is used to convert alkenes into diols. The further reaction of diols with periodic acid leads to the cleavage of diols and formation of aldehydes or ketones.

The product of the given reaction is shown in Figure 12.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  12

Figure 12

(m)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Sodium ethoxide is a strong base and used to convert haloalkanes into respective ether through SN2 mechanism.

Answer to Problem 11.39SP

The major product of the given reaction is 1-ethoxybutane.

Explanation of Solution

The given reaction occurs between sodium ethoxide and 1-bromobutane.

Sodium ethoxide is a strong base and used to convert haloalkanes into respective ether through SN2 mechanism.

The product of the given reaction is shown in Figure 13.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  13

Figure 13

(n)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: Sodium ethoxide is a strong base and used to convert bulkier haloalkanes into respective alkenes.

Answer to Problem 11.39SP

The major product of the given reaction is 2-methyl-2-butene.

Explanation of Solution

The given reaction occurs between sodium ethoxide and 2-methyl-2-bromobutane.

Sodium ethoxide is a strong base and used to convert bulkier haloalkanes into respective alkenes.

The product of the given reaction is shown in Figure 14.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  14

Figure 14

(o)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The Swern oxidation of alcohols to convert it into aldehydes are done by DMSO and oxalyl chloride reagent.

Answer to Problem 11.39SP

The major product of the given reaction is octanal.

Explanation of Solution

The given reaction occurs between octan-1-ol, DMSO and oxalyl chloride. The Swern oxidation of alcohols to convert it into aldehydes are done by DMSO and oxalyl chloride reagent.

The product of the given reaction is shown in Figure 15.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  15

Figure 15

(p)

Expert Solution
Check Mark
Interpretation Introduction

To determine: The major product of the given reaction, including stereochemistry if appropriate.

Interpretation: The major product of the given reaction, including stereochemistry if appropriate is to be predicted.

Concept introduction: The DMP reagent is used to convert primary alcohols into aldehydes and secondary alcohols into ketones.

Answer to Problem 11.39SP

The major product of the given reaction is 4-cyclopentylhexanal.

Explanation of Solution

The given reaction occurs between 4-cyclopentylhexan-1-ol, DMP reagent. The DMP reagent is used to convert primary alcohols into aldehydes and secondary alcohols into ketones.

The product of the given reaction is shown in Figure 16.

Organic Chemistry (9th Edition), Chapter 11, Problem 11.39SP , additional homework tip  16

Figure 16

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Chapter 11 Solutions

Organic Chemistry (9th Edition)

Ch. 11.6 - Predict the products of the following reactions....Ch. 11.7A - Propose a mechanism for the reaction of a....Ch. 11.7B - Prob. 11.13PCh. 11.7B - Show how you would use a simple chemical test to...Ch. 11.7C - Neopentyl alcohol, (CH3)3CCH2OH, reacts with...Ch. 11.7C - Prob. 11.16PCh. 11.7C - When cis-2-methylcyclohexanol reacts with the...Ch. 11.8 - Prob. 11.18PCh. 11.9 - Prob. 11.19PCh. 11.9 - Prob. 11.20PCh. 11.9 - Prob. 11.21PCh. 11.10A - Prob. 11.22PCh. 11.10A - Some alcohols undergo rearrangement or other...Ch. 11.10B - Prob. 11.24PCh. 11.10B - Explain why the acid-catalyzed condensation is a...Ch. 11.10B - Prob. 11.26PCh. 11.10B - When the following substituted cycloheptanol...Ch. 11.11A - Prob. 11.28PCh. 11.11A - Prob. 11.29PCh. 11.11B - Predict the products formed by periodic acid...Ch. 11.12 - Prob. 11.31PCh. 11.13A - Prob. 11.32PCh. 11.14 - Prob. 11.33PCh. 11.14 - a. Show how ethanol and cyclohexanol may be used...Ch. 11.14 - Prob. 11.35PCh. 11.14 - Phenols (pKa 10) are more acidic than other...Ch. 11.14 - To practice working through the early parts of a...Ch. 11.14 - Prob. 11.38PCh. 11 - Predict the major products of the following...Ch. 11 - Show how you would convert 2-methylcyclopentanol...Ch. 11 - In each case, show how you would synthesize the...Ch. 11 - Prob. 11.42SPCh. 11 - Prob. 11.43SPCh. 11 - Prob. 11.44SPCh. 11 - Both cis- and trans-2-methylcyclohexanol undergo...Ch. 11 - Prob. 11.46SPCh. 11 - Prob. 11.47SPCh. 11 - Show how you would make each compound, beginning...Ch. 11 - Predict the major products (including...Ch. 11 - Show how you would use simple chemical tests to...Ch. 11 - The compound shown below has three different types...Ch. 11 - Prob. 11.52SPCh. 11 - Prob. 11.53SPCh. 11 - Prob. 11.54SPCh. 11 - Prob. 11.55SPCh. 11 - Show how you would synthesize the following...Ch. 11 - Show how you would synthesize the following...Ch. 11 - The following pseudo-syntheses (guaranteed not to...Ch. 11 - Two unknowns, X and Y, both having the molecular...Ch. 11 - The Williamson ether synthesis involves the...Ch. 11 - Prob. 11.61SPCh. 11 - Prob. 11.62SPCh. 11 - Alcohols combine with ketones and aldehydes to...Ch. 11 - Prob. 11.64SPCh. 11 - Prob. 11.65SPCh. 11 - Prob. 11.66SP
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