CBSE Class 12 Chemistry Chapter 12: Aldehydes, Ketones and Carboxylic Acids NCERT Solutions

NCERT Solutions PDF Class 12 PDF

This comprehensive set of NCERT Solutions for CBSE Class 12 Chemistry, Chapter 12, focuses on Aldehydes, Ketones, and Carboxylic Acids. It provides detailed explanations for Multiple Choice Questions (MCQs), covering essential reactions and concepts like hydration of alkynes, reactivity of carbonyl compounds towards nucleophilic addition, and the acidic strength of various organic compounds. The solutions also explain the preparation of esters through reactions like the Schotten-Baumann reaction. These solutions are designed to help students understand the underlying principles, practice problem-solving, and prepare effectively for their board examinations by clarifying complex topics and reaction mechanisms.

Quick info

BoardCBSE
ClassClass 12
SubjectChemistry Exemplar
Session2026
LanguageEnglish
TypeNCERT Solutions
ChapterChapter 12

Chapter summary

Chapter 12 of the CBSE Class 12 Chemistry syllabus deals with Aldehydes, Ketones, and Carboxylic Acids. This NCERT Solutions set covers the key concepts through MCQs, including the hydration of alkynes to form ketones, factors affecting the reactivity of carbonyl compounds in nucleophilic addition reactions, and the comparative acidic strengths of phenols, alcohols, and carboxylic acids. It also touches upon the synthesis of esters. The solutions offer step-by-step explanations to reinforce learning.

Learning outcomes

  • Understand the hydration of alkynes and the formation of ketones.
  • Analyze the factors influencing the reactivity of aldehydes and ketones towards nucleophilic addition.
  • Compare and order the acidic strengths of phenols, alcohols, and carboxylic acids.
  • Explain the mechanism and conditions for ester formation reactions.
  • Identify the products of specific organic reactions involving aldehydes, ketones, and carboxylic acids.

Topics covered

Paper topics

  • Hydration of Alkynes
  • Nucleophilic Addition Reactions
  • Reactivity of Carbonyl Compounds
  • Steric and Electronic Factors
  • Acidic Strength of Organic Compounds
  • Phenols
  • Alcohols
  • Carboxylic Acids
  • Esterification
  • Schotten-Baumann Reaction
  • Tautomerism
  • Aldehydes and Ketones

Important topics

  • Nucleophilic Addition to Carbonyls
  • Reactivity Order of Aldehydes and Ketones
  • Acidic Strength Comparison (Alcohols, Phenols, Carboxylic Acids)
  • Preparation of Esters
  • Hydration of Alkynes

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Questions and Solutions

Multiple Choice Questions (MCQs) - Q. 1

Addition of water to alkynes occurs in an acidic medium and in the presence of Hg2+ ions as a catalyst. Which of the following products will be formed on addition of water to but-1-yne under these conditions?

CH_3 - CH_2 - CH = CH_2

(a) CH_3 - CH_2 - CH_2 - CH_2 - OH

(b) CH_3 - CH_2 - C(=O) - CH_3

(c) CH_3 - CH_2 - CH_2 - C(=O) - H

(d) CH_3 - CH_2 - CH(OH) - CH_3

Solution: The addition of water to alkynes in the presence of Hg2+ and acid catalyst follows Markovnikov's rule. For but-1-yne (CH_3 - CH_2 - CH = CH_2), the water molecule adds such that the hydrogen atom attaches to the carbon with more hydrogen atoms, and the hydroxyl group attaches to the other carbon. This initially forms an unstable enol intermediate (CH_3 - CH_2 - CH(OH) = CH_2). This enol then undergoes tautomerism to form the more stable ketone, butan-2-one (CH_3 - CH_2 - C(=O) - CH_3).

CH_3 - CH_2 - CH = CH_2 \xrightarrow{\text{Hg}^{2+}, \text{H}_2\text{O}} [CH_3 - CH_2 - CH(OH) = CH_2] \xrightarrow{\text{Tautomerism}} CH_3 - CH_2 - C(=O) - CH_3

Answer: (b) Butan-2-one

Multiple Choice Questions (MCQs) - Q. 2

Which of the following compounds is most reactive towards nucleophilic addition reactions?

(a) CH_3 - C(=O) - H (Ethanal)

(b) CH_3 - C(=O) - CH_3 (Propanone)

(c) C_6H_5 - C(=O) - H (Benzaldehyde)

(d) C_6H_5 - C(=O) - OH (Benzoic acid)

Solution: The reactivity of carbonyl compounds towards nucleophilic addition reactions depends on two main factors: electronic effects and steric effects.
  1. Electronic Factor: The more positive the carbonyl carbon, the greater its reactivity. Electron-donating groups (like alkyl groups) decrease the positive charge on the carbonyl carbon, reducing reactivity. Electron-withdrawing groups increase reactivity.
  2. Steric Factor: Less bulky groups around the carbonyl carbon lead to greater reactivity as they offer less hindrance to the incoming nucleophile.
Comparing the given compounds:
  • Ethanal (CH_3CHO) has one electron-donating methyl group and a hydrogen atom.
  • Propanone (CH_3COCH_3) has two electron-donating methyl groups, making the carbonyl carbon less positive and more sterically hindered than in ethanal.
  • Benzaldehyde (C_6H_5CHO) has a phenyl group, which can withdraw electrons via resonance but also offers some steric hindrance. However, its reactivity is generally less than ethanal.
  • Benzoic acid (C_6H_5COOH) is a carboxylic acid, and while it has a carbonyl group, its reactivity towards nucleophilic addition is significantly different and generally lower than aldehydes and ketones due to resonance and the presence of the -OH group.
Therefore, ethanal, with the least electron donation and minimal steric hindrance, is the most reactive towards nucleophilic addition. Answer: (a) Ethanal

Multiple Choice Questions (MCQs) - Q. 3

The correct order of increasing acidic strength is ...... .
  1. phenol < ethanol < chloroacetic acid < acetic acid
  2. ethanol < phenol < chloroacetic acid < acetic acid
  3. ethanol < phenol < acetic acid < chloroacetic acid
  4. chloroacetic acid < acetic acid < phenol < ethanol
Solution: The acidic strength of a compound is determined by the stability of its conjugate base formed after the removal of a proton (H^+).
  1. Ethanol (CH_3CH_2OH): The ethoxide ion (CH_3CH_2O^-) is formed. This is a strong base and is destabilized by the electron-donating effect of the ethyl group.
  2. Phenol (C_6H_5OH): The phenoxide ion (C_6H_5O^-) is formed. This ion is resonance-stabilized by delocalization of the negative charge into the benzene ring, making it less basic and thus phenol more acidic than ethanol.
  3. Acetic acid (CH_3COOH): The acetate ion (CH_3COO^-) is formed. It is stabilized by resonance between the two oxygen atoms, making it more stable than the phenoxide ion. Therefore, acetic acid is more acidic than phenol.
  4. Chloroacetic acid (ClCH_2COOH): The chloroacetate ion (ClCH_2COO^-) is formed. The electron-withdrawing chlorine atom attached to the alpha-carbon stabilizes the negative charge on the carboxylate group through inductive effect, further increasing the acidity. Thus, chloroacetic acid is more acidic than acetic acid.
The order of increasing acidic strength is: Ethanol < Phenol < Acetic acid < Chloroacetic acid. Answer: (c) ethanol < phenol < acetic acid < chloroacetic acid

Multiple Choice Questions (MCQs) - Q. 4

Compound Ph-COO-Ph can be prepared by the reaction of ..... .
  1. phenol and benzoic acid in the presence of NaOH
  2. phenol and benzoyl chloride in the presence of pyridine
  3. phenol and benzoyl chloride in the presence of ZnCl2
  4. phenol and benzaldehyde in the presence of palladium
Solution: The compound Ph-COO-Ph is diphenyl ester. It can be prepared by the reaction of phenol (C_6H_5OH) with benzoyl chloride (C_6H_5COCl). This reaction is typically carried out in the presence of a base, such as pyridine or aqueous NaOH, which acts as a catalyst and neutralizes the HCl formed during the reaction. This is a classic example of esterification, specifically known as the Schotten-Baumann reaction when performed under specific conditions.

C_6H_5OH + C_6H_5COCl \xrightarrow{\text{Pyridine}} C_6H_5COOC_6H_5 + HCl

Option (a) involves a carboxylic acid and a phenol, which typically requires stronger dehydrating agents for esterification. Option (c) uses ZnCl2, which is a Lewis acid catalyst often used for other reactions. Option (d) involves benzaldehyde, which would lead to different products. Answer: (b) phenol and benzoyl chloride in the presence of pyridine

Common mistakes

  • Incorrectly predicting the product of alkyne hydration.
  • Misinterpreting the electronic and steric effects on carbonyl compound reactivity.
  • Confusing the relative acidic strengths of different functional groups.
  • Errors in applying reaction conditions for esterification.

Revision tips

  • Review the general mechanisms for nucleophilic addition to carbonyl compounds.
  • Create flashcards for comparing the acidic strengths of various organic molecules.
  • Practice drawing reaction schemes for ester formation, noting catalysts and reagents.
  • Focus on understanding the role of catalysts like Hg^{2+} in alkyne hydration.

Practice MCQs

Q1. Addition of water to alkynes occurs in an acidic medium and in the presence of Hg^{2+} ions as a catalyst. Which of the following products will be formed on addition of water to but-1-yne under these conditions?

Q2. Which of the following carbonyl compounds is most reactive towards nucleophilic addition reactions?

Q3. What is the correct order of increasing acidic strength among phenol, ethanol, chloroacetic acid, and acetic acid?

Q4. The compound Ph-COO-Ph (diphenyl ester) can be prepared by the reaction of:

Frequently asked questions

What is the role of Hg^{2+} in the addition of water to alkynes?

Hg^{2+} acts as a catalyst in the hydration of alkynes, facilitating the addition of water across the triple bond. It helps in forming an enol intermediate which then tautomerizes to a ketone.

Why are aldehydes generally more reactive than ketones towards nucleophilic addition?

Aldehydes are more reactive because the carbonyl carbon has less steric hindrance and is less shielded by electron-donating alkyl groups compared to ketones, making it more susceptible to nucleophilic attack.

How does the presence of a chlorine atom affect the acidity of acetic acid?

A chlorine atom attached to the alpha-carbon of acetic acid is electron-withdrawing. It stabilizes the carboxylate anion formed after deprotonation, thus increasing the acidity of chloroacetic acid compared to acetic acid.

What is the Schotten-Baumann reaction?

The Schotten-Baumann reaction is a method for preparing esters or amides by reacting an acid chloride with an alcohol or amine, respectively, in the presence of an aqueous base (like NaOH) or an organic base (like pyridine).

What is the difference in acidic strength between phenol and ethanol?

Phenol is more acidic than ethanol because the phenoxide ion (conjugate base of phenol) is resonance-stabilized, making it more stable than the ethoxide ion (conjugate base of ethanol), which is only inductively stabilized.

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