ORGANIC CHEMISTRY SAPLING ACCESS + ETEX
ORGANIC CHEMISTRY SAPLING ACCESS + ETEX
6th Edition
ISBN: 9781319306977
Author: LOUDON
Publisher: INTER MAC
Question
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Chapter 10, Problem 10.39AP
Interpretation Introduction

(a)

Interpretation:

The product expected when 1-butanol reacts with concentrated aqueous HBr, H2SO4 catalyst, heat is to be stated.

Concept introduction:

The nucleophilic substitution reactions are the reactions in which a group is substituted by an nucleophile. The rate of reaction depends upon the nucleophilicity and concentration of the nucleophile.

The SN2 reaction is a nucleophilic substitution bimolecular reaction in which the addition of nucleophile and elimination of a leaving group takes place simultaneously. The rate of reaction depends upon both the substrate and reactant in the rate law equation.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and concentrated aqueous HBr, H2SO4 catalyst, heat is 2-bromobutane which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  1

Explanation of Solution

The product obtained on the reaction of 1-butanol and concentrated aqueous HBr, H2SO4 catalyst, heat is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  2

Figure 1

The alcohol 1-butanol reacts with concentrated aqueous HBr, H2SO4 catalyst, heat via SN2 reaction pathway. The hydroxide group is protonated with the use of H2SO4 catalyst in order to make it a good leaving group. After protonation the bromide ion attacks from behind and eliminates the protonated hydroxide group as water to give 2-bromobutane as product.

Conclusion

The product obtained on the reaction of 1-butanol and concentrated aqueous HBr, H2SO4 catalyst, heat is 2-bromobutane shown in Figure 1.

Interpretation Introduction

(b)

Interpretation:

The product expected when 1-butanol reacts with cold aqueous H2SO4 is to be stated.

Concept introduction:

An E2 reaction is a base-promoted βelimination reaction. This reaction follows a concerted reaction mechanism. In this reaction, a β- proton is taken by the base and simultaneously leaving group is eliminated. An alkene is obtained as a product of βelimination reaction.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and cold aqueous H2SO4 is but-1-ene which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  3

Explanation of Solution

The product obtained on the reaction of 1-butanol and cold aqueous H2SO4 is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  4

Figure 2

The alcohol 1-butanol is first protonated by the acid H2SO4. After this step, the conjugate base of acid takes up the β- proton from the alcohol and simultaneously removes the protonated hydroxide group to give but-1-ene as a product. This reaction is also known as dehydration of alcohols to alkenes. This reaction is a temperature controlled reversible reaction.

Conclusion

The product obtained on the reaction of 1-butanol and cold aqueous H2SO4 is but-1-ene shown in Figure 2.

Interpretation Introduction

(c)

Interpretation:

The product expected when 1-butanol reacts with pyridinium chlorochromate (PCC) in CH2Cl2

is to be stated.

Concept introduction:

Primary and secondary alcohols can be oxidized into aldehydes and ketones using Cr(VI) compounds as they are very good oxidizing agents. Few forms of chromium used to oxidize are chromate (CrO42) and dichromate (Cr2O72) and chromium trioxide (CrO3). Primary alcohols are oxidized into aldehydes and secondary alcohols are oxidized into ketones.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The products obtained on the reaction of 1-butanol and pyridinium chlorochromate (PCC) in CH2Cl2 is butyraldehyde which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  5

Explanation of Solution

The products obtained on the reaction of 1-butanol and pyridinium chlorochromate (PCC) in CH2Cl2 is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  6

Figure 3

Primary alcohols on oxidation give aldehyde. Aldehydes can further undergo oxidation to give carboxylic acids. The oxidizing reagent pyridinium chlorochromate (PCC) in CH2Cl2 stops the process of oxidation of primary alcohol at the stage of aldehyde only therefore, oxidation of 1-butanol produces butyraldehyde as a product.

Conclusion

The products obtained on the reaction of 1-butanol and pyridinium chlorochromate (PCC) in CH2Cl2 is butyraldehyde shown in Figure 3.

Interpretation Introduction

(d)

Interpretation:

The product expected when 1-butanol reacts with NaH is to be stated.

Concept introduction:

Acid-base reaction are among the fastest reaction in the chemistry. Acids and bases react vigorously generating heat and water normally. Metals are basic in nature due to the presence of free electrons to donate. Alcohols are both acidic and basic in nature.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and NaH is sodium butan-1-olate which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  7

Explanation of Solution

The product obtained on the reaction of 1-butanol and NaH is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  8

Figure 4

The sodium hydride is a very strong base and it undergoes acid-base reaction with alcohol 1-butanol. The alcohol is acting as an acid due to the presence of polar hydrogen available to donate. The product obtained after the acid-base reaction is sodium butan-1-olate.

Conclusion

The product obtained on the reaction of 1-butanol and NaH is sodium butan-1-olate shown in Figure 4.

Interpretation Introduction

(e)

Interpretation:

The product expected when the product of part (d) is reacted with CH3I in DMSO is to be stated.

Concept introduction:

The nucleophilic substitution reactions are the reactions in which a group is substituted by an nucleophile. The rate of reaction depends upon the nucleophilicity and concentration of the nucleophile.

The SN2 reaction is a nucleophilic substitution bimolecular reaction in which the addition of nucleophile and elimination of a leaving group takes place simultaneously. The rate of reaction depends upon both the substrate and reactant in the rate law equation.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of sodium butan-1-olate and CH3I in DMSO is 1-methoxybutane which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  9

Explanation of Solution

The product of part (d) is sodium butan-1-olate.

The product obtained on the reaction of sodium butan-1-olate and CH3I in DMSO is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  10

Figure 5

The sodium butan-1-olate is basic in nature and also acts as nucleophile. The reaction undergoes via SN2 pathway. butan-1-olate ion attacks from behind on the CH3I to substitute the iodide ion and make it leave to give rise to as a product.

Conclusion

The product obtained on the reaction of sodium butan-1-olate and CH3I in DMSO is 1-methoxybutane shown in Figure 5.

Interpretation Introduction

(f)

Interpretation:

The product expected when 1-butanol reacts with p-toluenesulfonyl chloride in pyridine is to be stated.

Concept introduction:

The hydroxide group in alcohols is not a good leaving group in order to perform a nucleophilic substitution reaction on alcohols to produce more compounds. Hydroxide group is made a good leaving group with the help of some compounds like methanesulfonyl chloride and p-toluenesulfonyl chloride.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and p-toluenesulfonyl chloride in pyridine is butyl-4-methylbenzenesulfonate which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  11

Explanation of Solution

The product obtained on the reaction of 1-butanol and p-toluenesulfonyl chloride in pyridine is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  12

Figure 6

The reaction of an alcohol with sulfonate derivatives such as methanesulfonyl chloride and p-toluenesulfonyl chloride are done to make hydroxide group and good leaving group. Pyridine being more basic takes up the proton of the hydroxide group and make it a good nucleophile. This nucleophile then substitute the chloride group of methanesulfonyl chloride leading to the formation of an ester. Same happens here in this reaction 1-butanol reacts with p-toluenesulfonyl chloride to produce an ester butyl-4-methylbenzenesulfonate.

Conclusion

The product obtained on the reaction of 1-butanol and p-toluenesulfonyl chloride in pyridine is butyl-4-methylbenzenesulfonate shown in Figure 6.

Interpretation Introduction

(g)

Interpretation:

The product expected when 1-butanol reacts with PrMgBr in anhydrous ether is to be stated.

Concept introduction:

The reaction of an alkyl halide with a metal like magnesium in the presence of dry ether leads to the formation of RMgX (organometallic compounds) also known as a Grignard reagent. These compounds are very sensitive to moisture or polar hydrogens and react immediately leading to the formation of alkane of the alkyl group.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and PrMgBr in anhydrous ether is propane which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  13

Explanation of Solution

The product obtained on the reaction of 1-butanol and PrMgBr in anhydrous ether is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  14

Figure 7

The PrMgBr is a grignard reagent and reacts very violently with polar hydrogen containing compounds. Alcohols contains polar hydrogen. Grignard reagent reacts with alcohols to give alkane. The alcohol 1-butanol reacts with Grignard reagent PrMgBr to give propane as a product.

Conclusion

The product obtained on the reaction of 1-butanol and PrMgBr in anhydrous ether is propane shown in Figure 7.

Interpretation Introduction

(h)

Interpretation:

The product expected when 1-butanol reacts with SOCl2 in pyridine is to be stated.

Concept introduction:

The nucleophilic substitution reactions are the reactions in which a group is substituted by an nucleophile. The rate of reaction depends upon the nucleophilicity and concentration of the nucleophile.

The SN2 reaction is a nucleophilic substitution bimolecular reaction in which the addition of nucleophile and elimination of a leaving group takes place simultaneously. The rate of reaction depends upon both the substrate and reactant in the rate law equation.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and SOCl2 in pyridine is 1-chlorobutane which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  15

Explanation of Solution

The product obtained on the reaction of 1-butanol and SOCl2 in pyridine is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  16

Figure 8

The alcohol 1-butanol undergo SN2 type reaction with SOCl2 in pyridine. The reagent SOCl2 in pyridine on reaction with alcohols give alkyl chloride as a product. Therefore, the product of reaction between 1-butanol and SOCl2 in pyridine is 1-chlorobutane.

Conclusion

The product obtained on the reaction of 1-butanol and SOCl2 in pyridine is 1-chlorobutane shown above in Figure 8.

Interpretation Introduction

(i)

Interpretation:

The product expected when 1-butanol reacts with Ph3PBr2 in DMF is to be stated.

Concept introduction:

The nucleophilic substitution reactions are the reactions in which a group is substituted by an nucleophile. The rate of reaction depends upon the nucleophilicity and concentration of the nucleophile.

The SN2 reaction is a nucleophilic substitution bimolecular reaction in which the addition of nucleophile and elimination of a leaving group takes place simultaneously. The rate of reaction depends upon both the substrate and reactant in the rate law equation.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of 1-butanol and Ph3PBr2 in DMF is 1-bromobutane which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  17

Explanation of Solution

The product obtained on the reaction of 1-butanol and Ph3PBr2 in DMF is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  18

Figure 9

The alcohol 1-butanol undergo SN2 type reaction with Ph3PBr2 in DMF. The reagent Ph3PBr2 in DMF on reaction with alcohols give alkyl bromide as a product. Therefore, the product of reaction between 1-butanol and Ph3PBr2 in DMF is 1-bromobutane.

Conclusion

The product obtained on the reaction of 1-butanol and Ph3PBr2 in DMF is 1-bromobutane shown above in Figure 9.

Interpretation Introduction

(j)

Interpretation:

The product expected when product of part (a) is reacted with Mg in dry ether is to be stated.

Concept introduction:

The reaction of an alkyl halide with a metal like magnesium in the presence of dry ether leads to the formation of RMgX (organometallic compounds) also known as a Grignard reagent. These compounds are very sensitive to moisture or polar hydrogens and react immediately leading to the formation of alkane of the alkyl group.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on reaction of 2-bromobutane and Mg in dry ether is sec- butylmagnesium bromide which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  19

Explanation of Solution

The product of part (a) is 2-bromobutane.

The product obtained on reaction of 2-bromobutane and Mg in dry ether is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  20

Figure 10

The alkyl halide reacts with magnesium metal in dry ether to produce the Grignard reagent. The 2-bromobutane reacts with the Mg in dry ether to produce sec- butylmagnesium bromide.

Conclusion

The product obtained on reaction of 2-bromobutane and Mg in dry ether is sec- butylmagnesium bromide shown in Figure 10.

Interpretation Introduction

(k)

Interpretation:

The product expected when the product of part (f) is reacted with K+(CH3)3CO in (CH3)3COH is to be stated.

Concept introduction:

An E2 reaction is a base-promoted βelimination reaction. This reaction follows a concerted reaction mechanism. In this reaction, a β- proton is taken by the base and simultaneously leaving group is eliminated. An alkene is obtained as a product of βelimination reaction.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained on the reaction of butyl-4-methylbenzenesulfonate and K+(CH3)3CO in (CH3)3COH is but-1-ene which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  21

Explanation of Solution

The product of part (f) is butyl-4-methylbenzenesulfonate.

The product obtained on the reaction of butyl-4-methylbenzenesulfonate and K+(CH3)3CO in (CH3)3COH is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  22

Figure 11

The ester butyl-4-methylbenzenesulfonate undergoes βelimination reaction with the strong base K+(CH3)3CO. The base takes up the β- proton of the alkyl substitutent which in turn eliminates the p-toluenesulfonate group or (OTs) group to give alkene but-1-ene as product.

Conclusion

The product obtained on the reaction of butyl-4-methylbenzenesulfonate and K+(CH3)3CO in (CH3)3COH is but-1-ene shown in Figure 11.

Interpretation Introduction

(l)

Interpretation:

The product expected when 1-butanol is reacted with triflic anhydride and pyridine is to be stated.

Concept introduction:

The hydroxide group in alcohols is not a good leaving group. In order to perform a nucleophilic substitution reaction on alcohols to produce more compounds hydroxide group is made a good leaving group with the help of some compounds like methanesulfonyl chloride and p-toluenesulfonyl chloride.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained when 1-butanol is reacted with triflic anhydride and pyridine is butyl trifluoromethanesulfonate which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  23

Explanation of Solution

The product obtained when 1-butanol is reacted with triflic anhydride and pyridine is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  24

Figure 12

The triflic anhydride is also one of the compounds used to make hydroxide group a good leaving group. This compound is used much more reactive ester as compared to given by tosylates and mesylates. The yield of the product obtained by this ester of substitution is very high.

The 1-butanol reacts with triflic anhydride to give an ester (butyl trifluoromethanesulfonate) as a product.

Conclusion

The product obtained when 1-butanol is reacted with triflic anhydride and pyridine is butyl trifluoromethanesulfonate shown above in Figure 12.

Interpretation Introduction

(m)

Interpretation:

The product expected when the product of (l) is reacted with anhydrous K+F in acetonitrile is to be stated.

Concept introduction:

The hydroxide group in alcohols is not a good leaving group in order to perform a nucleophilic substitution reaction on alcohols to produce more compounds. Hydroxide group is made a good leaving group with the help of some compounds like methanesulfonyl chloride and p-toluenesulfonyl chloride.

Expert Solution
Check Mark

Answer to Problem 10.39AP

The product obtained when butyl trifluoromethanesulfonate is reacted with anhydrous K+F in acetonitrile is 1-Fluorobutane which is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  25

Explanation of Solution

The product obtained when butyl trifluoromethanesulfonate is reacted with anhydrous K+F in acetonitrile is shown below.

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX, Chapter 10, Problem 10.39AP , additional homework tip  26

Figure 13

The compound butyl trifluoromethanesulfonate undergoes nucleophilic substitution reaction with K+ F to give 1-Fluorobutane as a product. Flouride ion acts as a nucleophile to substitute trifluoromethanesulfonate leaving group.

Conclusion

The product obtained when butyl trifluoromethanesulfonate is reacted with anhydrous K+ F in acetonitrile is 1-Fluorobutane shown in Figure 13.

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Chapter 10 Solutions

ORGANIC CHEMISTRY SAPLING ACCESS + ETEX

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