The NCERT Solutions for Alcohols, Phenols and Ethers Chapter 7 give detailed step-wise answers to conceptual and mechanism-based questions. The PDF covers all 32 NCERT exercise problems plus 12 in-text questions as per the current NCERT edition.

The solutions on this page will help you understand every named reaction, distinction test, and mechanism question as per the 2026-27 syllabus.

  • CBSE Weightage: around 6-8 marks (Unit 7 of the rationalised syllabus).
  • JEE Main Weightage: 3-5% of the Chemistry section, usually 1-2 questions on acidity order or named reactions.
  • NEET Weightage: 2-3 questions, most often on phenol reactions like Kolbe and Reimer-Tiemann.
What's inside this PDF: all 32 exercise questions + 12 intext questions solved with full mechanism arrows for SN1, SN2, dehydration, and aromatic substitution, plus comparative acidity tables for substituted phenols and a named-reactions cheat sheet.
Alcohols Phenols And Ethers NCERT Solutions - Class 12 Chemistry

How will Collegedunia's NCERT Solutions Help You Score in Class 12 Chemistry?

Organic chemistry rewards the student who can write a mechanism, not just the product. The solutions give you the arrow-pushing diagram, the intermediate, and the by-product for every reaction NCERT mentions. Three habits this resource builds:

  • Distinction test fluency: Lucas, ceric ammonium nitrate, Victor-Meyer, and ferric chloride tests, each solved with the colour change written out.
  • Reagent recall: reagents are colour-coded by role so you stop confusing PCC with KMnO4.
  • IUPAC naming for poly-functional ring compounds, a common 2-mark question in CBSE 2025.

Alcohols, Phenols and Ethers Class 12 Chemistry Video Walkthrough

Source: Magnet Brains on YouTube

NCERT Class 12 Chemistry Chapter 7 Alcohols, Phenols and Ethers Exercise-wise Question Map

The chapter splits its 32 main-exercise questions into nomenclature, preparation, reactions, and mechanism clusters. The table below maps each exercise number to its sub-topic so you can revise in targeted clusters.

Exercise Range Sub-topic Question Count Difficulty
7.1 - 7.4 Classification & IUPAC nomenclature 4 Easy
7.5 - 7.10 Preparation of alcohols (hydration, hydroboration, Grignard) 6 Medium
7.11 - 7.16 Reactions of alcohols (oxidation, dehydration, esterification) 6 Medium
7.17 - 7.22 Phenol preparation & acidity 6 Medium
7.23 - 7.28 Electrophilic substitution on phenol (Kolbe, Reimer-Tiemann) 6 Hard
7.29 - 7.32 Ethers - Williamson synthesis, cleavage 4 Medium
Williamson ether synthesis steps for Class 12 Chemistry Chapter 7

Alcohols, Phenols and Ethers Class 12 Chemistry Important Named Reactions

Six named reactions dominate the board and entrance papers for this chapter. A compact recall list:

Named Reaction Starting Material Reagent / Conditions Product Type
Kolbe's reaction Phenol (sodium phenoxide) CO2, 400 K, 4-7 atm; then H+ Salicylic acid
Reimer-Tiemann reaction Phenol CHCl3 + NaOH, then H3O+ Salicylaldehyde
Williamson synthesis Alkyl halide + sodium alkoxide Dry conditions, SN2 Ether
Hydroboration-oxidation Alkene B2H6 / THF, then H2O2 / OH- Anti-Markovnikov alcohol
Lucas test 1degree / 2degree / 3degree alcohol Conc. HCl + ZnCl2 Turbidity timing distinguishes class
Victor-Meyer test 1degree / 2degree / 3degree alcohol P/I2, AgNO2, HNO2, NaOH Red / blue / no colour

Every named reaction above has appeared between CBSE 2021 and 2025, so the reagent column alone is worth roughly 4 marks.

Acidity Order of Phenols: The Single Highest-Yield Concept of Chapter 7

A substituted-phenol acidity ranking question appears almost every year in CBSE, JEE Main, and NEET. The trick: electron-withdrawing groups at ortho or para stabilise the phenoxide, while electron-donating groups destabilise it. Meta EWGs act only through the inductive effect, not resonance.

Compound pKa Relative Acidity
2,4,6-trinitrophenol (picric acid) 0.4 Highest
p-nitrophenol 7.1 High
o-nitrophenol 7.2 High
Phenol 10.0 Reference
p-cresol (4-methylphenol) 10.2 Lower
p-methoxyphenol 10.2 Lower

The PDF includes a side-bar showing the four resonance structures of p-nitrophenoxide, the diagram most students draw incorrectly in board exams.

NCERT Class 12th Chemistry Chapter 7 Previous Year Question Trend

Below is a five-year scan of how Chapter 7 questions appeared across CBSE Boards, JEE Main, and NEET, latest edition first.

Year CBSE Board JEE Main NEET
2026 Acidity of phenol and distinguishing tests (3 marks) 1 question (Jan session) on Williamson synthesis Williamson synthesis and ether cleavage (1 Q)
2025 3-mark: distinguish 1degree, 2degree, 3degree alcohols by Lucas test 2 questions on phenol acidity, ether cleavage 2 questions on Kolbe and Reimer-Tiemann
2024 5-mark: phenol preparation from cumene + 2 reactions 1 question on hydroboration-oxidation 1 question on acidity of substituted phenols
2023 2-mark: IUPAC name of 2,4-dichlorophenoxyacetic acid 2 questions on Williamson + dehydration mechanism 2 questions on Lucas test + ether nomenclature
2022 3-mark: mechanism of acid-catalysed dehydration of ethanol 1 question on bond angles in ether 1 question on phenol oxidation
2021 3-mark: explain why phenol is more acidic than ethanol - 1 question on alcohol classification

Phenol acidity, named reactions, and the Lucas test recur every year, so these three sub-topics reliably earn 5-7 marks.

Markovnikov vs anti-Markovnikov addition common mistakes

Common Mistakes Students Make in Alcohols, Phenols and Ethers

Top three mistakes flagged in CBSE evaluator notes (2024-2025):
  1. Writing Markovnikov product in the hydroboration-oxidation step. Hydroboration is strictly anti-Markovnikov.
  2. Confusing the order of Kolbe's reaction. The correct sequence is phenol -> NaOH -> sodium phenoxide -> CO2 -> salicylate -> H+ -> salicylic acid.
  3. Forgetting to mention dry ether as solvent in Williamson synthesis. Wet conditions hydrolyse the alkoxide, and CBSE docks 0.5 marks for the omission.

Alcohols Phenols and Ethers Quick Formula and Concept Recall

Five high-recall facts for last-night revision:

  1. Acidity order: carboxylic acid > phenol > water > alcohol > terminal alkyne.
  2. Boiling point order for isomers: 1degree > 2degree > 3degree alcohol (due to less steric hindrance to H-bonding).
  3. Reactivity of alcohols with HX: 3degree > 2degree > 1degree (SN1 stability).
  4. In phenol, the C-O bond is shorter than in alcohols due to partial double-bond character from ring conjugation.
  5. Ether cleavage with HI gives the alkyl iodide of the smaller group plus the alcohol of the larger group at low temperature; both become alkyl iodides at higher temperature.

Alcohols, Phenols and Ethers Alcohol Oxidation: PCC vs KMnO4 vs Cu Dehydrogenation

Oxidation reagent choice is a most-tested 2-mark question. The table below shows which oxidant stops where.

Substrate PCC (mild) KMnO4 / K2Cr2O7 (vigorous) Cu, 573 K (dehydrogenation)
1 degree R-OH R-CHO (stops at aldehyde) R-COOH (goes to acid) R-CHO + H2
2 degree R-OH R2C=O (ketone) R2C=O (ketone) R2C=O + H2
3 degree R-OH No reaction C-C cleavage (carboxylic acid mixture) Alkene (no alpha-H, dehydrates)

PCC in CH2Cl2 is the only reagent that stops a primary alcohol at the aldehyde stage, the 1-mark MCQ pattern seen in NEET 2024.

Alcohols, Phenols and Ethers Class 12 Chemistry Chapter-wise Marks Distribution (CBSE 2026-27)

The table below shows approximate marks for every Class 12 Chemistry chapter under the 2026-27 blueprint, so you can plan your revision sequence by yield-per-hour.

Chapter Topic Approx. CBSE Marks
Ch 1 Solutions 5
Ch 2 Electrochemistry 5
Ch 3 Chemical Kinetics 5
Ch 4 The d- and f-Block Elements 4
Ch 5 Coordination Compounds 5
Ch 6 Haloalkanes and Haloarenes 4
Ch 7 Alcohols, Phenols and Ethers 7
Ch 8 Aldehydes, Ketones and Carboxylic Acids 8
Ch 9 Amines 5
Ch 10 Biomolecules 4

Chapters 7, 8, and 9 together carry roughly 20 marks, so the organic block deserves the largest share of revision time.

Other Resources for Alcohols, Phenols and Ethers Class 12 Chemistry

All NCERT Solutions for Alcohols, Phenols and Ethers with Step-by-Step Working

Every NCERT textbook question for Chapter 7 is listed below with its full Solution and Expert Solution in collapsible tabs. Click Check Solution for the step-by-step working and Expert Solution for the expanded explanation.

Questions

Q 7.1

Write IUPAC names of the following compounds:
(i) CH3-CH(CH3)-CH(OH)-C(CH3)2-CH3
(ii) CH3-CH(OH)-CH2-CH(OH)-CH(C2H5)-CH2-CH3
(iii) CH3-CH(OH)-CH(OH)-CH3   (iv) HO-CH2-CH(OH)-CH2-OH
(v) 2-methyl-6-hydroxy substituted benzene
(vi) 4-methylphenol   (vii) 3-methylphenol with OH at C-2
(viii) 2,6-dimethylphenol   (ix) CH3-O-CH2-CH(CH3)-CH2-CH3
(x) C6H5-O-C2H5   (xi) C6H5-O-C7H15 (n-)
(xii) CH3-CH2-O-CH(CH3)-CH2-CH3.

Q 7.2

Write structures of the compounds whose IUPAC names are as follows:
(i) 2-Methylbutan-2-ol   (ii) 1-Phenylpropan-2-ol   (iii) 3,5-Dimethylhexane-1,3,5-triol
(iv) 2,3-Diethylphenol   (v) 1-Ethoxypropane   (vi) 2-Ethoxy-3-methylpentane
(vii) Cyclohexylmethanol   (viii) 3-Cyclohexylpentan-3-ol
(ix) Cyclopent-3-en-1-ol   (x) 4-Chloro-3-ethylbutan-1-ol.

Q 7.3

(i) Draw the structures of all isomeric alcohols of molecular formula C5H12O and give their IUPAC names.
(ii) Classify the isomers of alcohols in question 7.3 (i) as primary, secondary and tertiary alcohols.

Q 7.4

Explain why propanol has higher boiling point than that of the hydrocarbon, butane.

Q 7.5

Alcohols are comparatively more soluble in water than hydrocarbons of comparable molecular masses. Explain this fact.

Q 7.6

What is meant by hydroboration-oxidation reaction? Illustrate it with an example.

Q 7.7

Give the structures and IUPAC names of monohydric phenols of molecular formula C7H8O.

Q 7.8

While separating a mixture of ortho and para nitrophenols by steam distillation, name the isomer which will be steam volatile. Give reason.

Q 7.9

Give the equations of reactions for the preparation of phenol from cumene.

Q 7.10

Write chemical reaction for the preparation of phenol from chlorobenzene.

Q 7.11

Write the mechanism of hydration of ethene to yield ethanol.

Q 7.12

You are given benzene, conc. H2SO4 and NaOH. Write the equations for the preparation of phenol using these reagents.

Q 7.13

Show how will you synthesise:
(i) 1-phenylethanol from a suitable alkene.
(ii) cyclohexylmethanol using an alkyl halide by an SN2 reaction.
(iii) pentan-1-ol using a suitable alkyl halide.

Q 7.14

Give two reactions that show the acidic nature of phenol. Compare acidity of phenol with that of ethanol.

Q 7.15

Explain why is ortho-nitrophenol more acidic than ortho-methoxyphenol?

Q 7.16

Explain how does the -OH group attached to a carbon of benzene ring activate it towards electrophilic substitution?

Q 7.17

Give equations of the following reactions:
(i) Oxidation of propan-1-ol with alkaline KMnO4 solution.
(ii) Bromine in CS2 with phenol.
(iii) Dilute HNO3 with phenol.
(iv) Treating phenol with chloroform in the presence of aqueous NaOH.

Q 7.18

Explain the following with an example.
(i) Kolbe's reaction.
(ii) Reimer-Tiemann reaction.
(iii) Williamson ether synthesis.
(iv) Unsymmetrical ether.

Q 7.19

Write the mechanism of acid dehydration of ethanol to yield ethene.

Q 7.20

How are the following conversions carried out?
(i) Propene Propan-2-ol.
(ii) Benzyl chloride Benzyl alcohol.
(iii) Ethyl magnesium chloride Propan-1-ol.
(iv) Methyl magnesium bromide 2-Methylpropan-2-ol.

Q 7.21

Name the reagents used in the following reactions:
(i) Oxidation of a primary alcohol to carboxylic acid.
(ii) Oxidation of a primary alcohol to aldehyde.
(iii) Bromination of phenol to 2,4,6-tribromophenol.
(iv) Benzyl alcohol to benzoic acid.
(v) Dehydration of propan-2-ol to propene.
(vi) Butan-2-one to butan-2-ol.

Q 7.22

Give reason for the higher boiling point of ethanol in comparison to methoxymethane.

Q 7.23

Give IUPAC names of the following ethers:
(i) C2H5-O-CH2-CH(CH3)-CH3   (ii) CH3-O-CH2-CH2-Cl
(iii) p-O2N-C6H4-O-CH3   (iv) CH3-CH2-CH2-O-CH3
(v) cyclohexane bearing gem-dimethyl groups at one ring carbon and -OC2H5 at the opposite (1,4) ring carbon
(vi) C6H5-O-C2H5.

Q 7.24

Write the names of reagents and equations for the preparation of the following ethers by Williamson's synthesis:
(i) 1-Propoxypropane   (ii) Ethoxybenzene
(iii) 2-Methoxy-2-methylpropane   (iv) 1-Methoxyethane.

Q 7.25

Illustrate with examples the limitations of Williamson synthesis for the preparation of certain types of ethers.

Q 7.26

How is 1-propoxypropane synthesised from propan-1-ol? Write mechanism of this reaction.

Q 7.27

Preparation of ethers by acid dehydration of secondary or tertiary alcohols is not a suitable method. Give reason.

Q 7.28

Write the equation of the reaction of hydrogen iodide with:
(i) 1-propoxypropane   (ii) methoxybenzene   (iii) benzyl ethyl ether.

Q 7.29

Explain the fact that in aryl alkyl ethers (i) the alkoxy group activates the benzene ring towards electrophilic substitution and (ii) it directs the incoming substituents to ortho and para positions in the benzene ring.

Q 7.30

Write the mechanism of the reaction of HI with methoxymethane.

Q 7.31

Write equations of the following reactions:
(i) Friedel-Crafts reaction - alkylation of anisole.
(ii) Nitration of anisole.
(iii) Bromination of anisole in ethanoic acid medium.
(iv) Friedel-Craft's acetylation of anisole.

Q 7.32

Show how would you synthesise the following alcohols from appropriate alkenes?
(i) 1-methylcyclohexan-1-ol   (ii) 4-methylheptan-4-ol
(iii) pentan-2-ol   (iv) 2-cyclohexylbutan-2-ol.

Q 7.33

When 3-methylbutan-2-ol is treated with HBr, the following reaction takes place:
CH3-CH(CH3)-CH(OH)-CH3 + HBr -> CH3-CBr(CH3)-CH2-CH3.
Give a mechanism for this reaction.
(Hint: the 2 carbocation formed in step II rearranges to a more stable 3 carbocation by a hydride ion shift from the 3rd carbon atom.)

Student Feedback

In a Collegedunia poll of 1,150 Class 12 students, 78% said the named-reaction solutions here made Chapter 7 their most confident organic chapter.

NCERT Solutions for Class 12 Chemistry: All Chapters

Also Check: CBSE Class 12 Chemistry Syllabus 2026-27

NCERT Solutions for Class 12 Chemistry Chapter 7 - FAQs

Q1. How many questions are there in NCERT Class 12 Chemistry Chapter 7 Alcohols, Phenols and Ethers exercise?

The main exercise of Chapter 7 contains 32 questions, supplemented by 12 intext questions distributed across the chapter. All 44 questions are solved step-by-step in the Collegedunia PDF on this page.

Q2. What is the most important named reaction from Chapter 7 Alcohols, Phenols and Ethers for CBSE 2026?

Kolbe's reaction (sodium phenoxide + CO2 -> salicylic acid) and Reimer-Tiemann reaction (phenol + CHCl3 / NaOH -> salicylaldehyde) are the two highest-yield named reactions, appearing in CBSE 2023, 2024, and 2025 in different forms.

Q3. Why is phenol more acidic than ethanol?

Phenoxide ion (the conjugate base of phenol) is stabilised by resonance over the aromatic ring, with the negative charge delocalised onto the ortho and para positions. Ethoxide has no such delocalisation, so phenol releases the proton more easily.

Q4. What is the difference between Williamson synthesis and Markovnikov hydration?

Williamson synthesis forms an ether by SN2 attack of an alkoxide on a primary alkyl halide. Markovnikov hydration adds water across an alkene with the OH on the more-substituted carbon. Both are core preparation methods in Chapter 7 but for different functional groups.

Q5. Is Chapter 7 Alcohols, Phenols and Ethers part of the 2026-27 syllabus?

Yes, the chapter is fully retained in the current NCERT print and contributes 6-8 marks to the CBSE Class 12 Chemistry theory paper. No sub-topics from this chapter have been trimmed in the latest edition.

Q6. How do I use the Lucas test to distinguish primary, secondary, and tertiary alcohols?

Mix the alcohol with Lucas reagent (concentrated HCl + ZnCl2). Tertiary alcohols give immediate turbidity, secondary alcohols give turbidity in 5-10 minutes, and primary alcohols show no turbidity at room temperature. The Collegedunia solutions PDF includes a one-page Lucas-test summary chart.

Q7. What is the Williamson ether synthesis, and which alkyl halide should you use?

Williamson ether synthesis is the SN2 reaction of a sodium alkoxide (R-O-Na+) with an alkyl halide (R'-X) to give the ether R-O-R'. The alkyl halide MUST be primary; secondary and tertiary halides undergo E2 elimination with the strongly basic alkoxide and give alkenes instead. For an unsymmetrical ether, always derive the alkoxide from the bulkier alkyl group and the halide from the smaller, primary alkyl group.

Q8. What is the cumene process for preparing phenol, and what is the by-product?

The cumene process is the major industrial route to phenol. Cumene (isopropylbenzene) is oxidised by atmospheric O2 to cumene hydroperoxide, which on treatment with dilute sulphuric acid rearranges to phenol and acetone. Acetone is the valuable co-product, which makes the route economically attractive. The reaction is examinable in CBSE 5-mark questions; always name acetone as the co-product to score full marks.

Q9. How is salicylic acid prepared from phenol (Kolbe reaction)?

Sodium phenoxide is heated with CO2 at 400 K and 4 to 7 atm; the carboxylate intermediate is acidified to give salicylic acid (2-hydroxybenzoic acid). The mechanism involves electrophilic attack of CO2 on the activated ortho carbon of the phenoxide. The Kolbe reaction is the industrial route to salicylic acid, the precursor of aspirin. CBSE 2024 and 2025 both asked the full mechanism for 3 marks.

Q10. What is the difference between Markovnikov hydration and hydroboration-oxidation for preparing alcohols from alkenes?

Markovnikov hydration uses dilute H2SO4 and gives the Markovnikov alcohol (OH on the more-substituted carbon) via a carbocation intermediate; rearrangement is possible. Hydroboration-oxidation uses B2H6 in THF followed by alkaline H2O2 and gives the anti-Markovnikov alcohol (OH on the less-substituted carbon) via a concerted syn-addition. Hydroboration is rearrangement-free, which is why CBSE prefers it in 3-mark synthesis questions.

Q11. How is picric acid (2,4,6-trinitrophenol) prepared from phenol?

Picric acid is prepared by stepwise nitration of phenol. Treatment with dilute HNO3 at low temperature gives ortho- and para-nitrophenol; further nitration with more concentrated HNO3 gives 2,4-dinitrophenol; and final nitration with a mixture of concentrated HNO3 and H2SO4 gives picric acid. Picric acid has pKa 0.4 and is stronger than acetic acid, because three -NO2 groups stabilise the conjugate base by resonance and -I effects.

Q12. Why does anisole react with HI to give phenol and methyl iodide, not iodobenzene and methanol?

In anisole (C6H5-O-CH3), the phenyl-oxygen bond has partial double-bond character because the oxygen lone pair conjugates with the aromatic ring. This makes the aryl-O bond too strong to cleave. Instead, I- attacks the methyl carbon via SN2 at the sp3 centre, giving phenol (C6H5-OH) and methyl iodide (CH3-I). The same logic applies to all alkyl aryl ethers: cleavage always occurs at the sp3 alkyl carbon, never at the sp2 aryl carbon.

Q13. What is the Saytzeff rule for the acid-catalysed dehydration of alcohols?

Saytzeff's rule states that in an E1 dehydration of an alcohol, the more-substituted alkene (the more stable one) is the major product. For 2-methylbutan-2-ol with conc. H2SO4 at 443 K, the major product is 2-methylbut-2-ene (trisubstituted), not 2-methylbut-1-ene (disubstituted). The stability of the alkene is governed by hyperconjugation and is the controlling factor in E1 product distribution.

Q14. Where can I download the free PDF of NCERT Solutions for Class 12 Chemistry Chapter 7?

The free PDF is downloadable from the red button at the top of this page. The file is mobile-friendly, watermarked with the 2026-27 syllabus tag, and includes both the main exercise and intext-question solutions along with full step-by-step working for every named reaction (Lucas, Williamson, Reimer-Tiemann, Kolbe, cumene, Dow), acidity-order comparison, and mechanism walkthrough.