IUPAC Nomenclature of Organic Compounds
Rules, Solved Examples & Board-Exam Practice Questions
By Dr. A. K. Saxena | CHEMSAK — Chemistry by Saxena A.K.
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Why This Topic Matters
If there's one organic chemistry skill that shows up in every single ICSE Class 10 board paper — 2008 through 2025 — it's IUPAC nomenclature. Sometimes you're asked to name a given structure. Sometimes you're asked to draw the structure for a given name. Either way, this topic alone can account for several marks on your paper, and it's completely rule-based — which means it's one of the easiest places to score full marks once you learn the system properly.
This post breaks down the IUPAC naming system exactly as it's taught in the ICSE Class 10 syllabus (Chapter 9: Organic Chemistry), with worked examples and real board-exam-style questions at the end.
What Does IUPAC Mean?
IUPAC stands for the International Union for Pure and Applied Chemistry. Before IUPAC rules existed, organic compounds were named based on their origin, properties, colour, or discoverer — for example, methane was called "marsh gas" because it was found in marshy areas, and methanoic acid was called "formic acid" because it was first obtained from red ants (formica is Latin for ant). This non-scientific naming became impossible to manage as the number of known organic compounds grew — organic compounds today outnumber all other known compounds roughly five times over.
IUPAC nomenclature fixes this by deriving every compound's name systematically from the name of the corresponding alkane.
The Four Parts of an IUPAC Name
Every IUPAC name is built from up to four parts, always in this order:
| Part | What it represents |
|---|---|
| Prefix | Side chains (alkyl groups) or halogen substituents |
| Word root | The number of carbon atoms in the main chain |
| Primary suffix | The type of carbon–carbon bonding (single, double, or triple) |
| Secondary suffix | The functional group present |
- Prefix → 3-Bromo (bromine at carbon 3)
- Word root → but (4 carbons)
- Primary suffix → ene (double bond, at position 2)
- Secondary suffix → al (aldehyde group, at position 1)
Step 1: Identify the Word Root (Number of Carbons)
The word root simply tells you how many carbon atoms are in the main chain.
| No. of C atoms | Word root |
|---|---|
| 1 | Meth |
| 2 | Eth |
| 3 | Prop |
| 4 | But |
| 5 | Pent |
| 6 | Hex |
| 7 | Hept |
| 8 | Oct |
| 9 | Non |
| 10 | Dec |
Step 2: Numbering the Main Chain
Once you've picked the main chain, number the carbons using these rules:
- Case 1 — Hydrocarbons (no functional group): Start numbering from the end closer to the side chain (alkyl group).
- Case 2 — Functional group present: Start numbering from the end closer to the functional group.
- Case 3 — Functional group carbon itself (e.g., –CHO, –COOH): The carbon of the functional group is always numbered 1.
These locant numbers are then used to indicate the position of side chains, double bonds, triple bonds, and functional groups in the final name.
Step 3: Primary Suffix — Based on Carbon–Carbon Bonding
| Bond type | Primary suffix |
|---|---|
| C — C (single) | -ane |
| C = C (double) | -ene |
| C ≡ C (triple) | -yne |
So: but + ane = butane; but + ene = butene; but + yne = butyne.
Step 4: Secondary Suffix — Based on Functional Group
The secondary suffix is what tells you what kind of compound you're dealing with.
| Structure | Functional Group | Secondary Suffix |
|---|---|---|
| –OH | Alcohol | -ol |
| –CHO | Aldehyde | -al |
| >C=O | Ketone | -one |
| –COOH | Carboxylic acid | -oic acid |
- Methane − e + ol = Methanol
- Ethane − e + al = Ethanal
- Propane − e + one = Propan-2-one
- Ethane − e + oic acid = Ethanoic acid
Step 5: Prefix — Side Chains and Halogens
If side chains or halogen atoms are attached to the main chain, they're named as a prefix, placed before the word root, with a locant number showing their position.
| Substituent | Prefix |
|---|---|
| –CH3 | Methyl |
| –C2H5 | Ethyl |
| –CH2CH2CH3 | Propyl |
| –CH(CH3)2 | Isopropyl |
| –Cl | Chloro |
| –Br | Bromo |
| –I | Iodo |
If the same group appears more than once, use a numerical prefix with locants for each position:
| Number of identical groups | Numerical prefix |
|---|---|
| 2 | Di |
| 3 | Tri |
| 4 | Tetra |
| 5 | Penta |
Putting It All Together — Worked Examples
- Main chain: 5 carbons → pent
- No double/triple bond → ane
- One methyl group at C-2 → 2-methyl
- Main chain (starting from the –CHO carbon as C-1): 6 carbons → hex
- Numbering: CHO(1)–CH2(2)–CH(Cl)(3)–CH2(4)–CH2(5)–CH3(6), so chlorine falls at C-3 → 3-chloro
- Aldehyde group → -al
- Main chain: 3 carbons → prop
- –OH at C-2 → -ol, numbering from the end nearer –OH
Quick Reference: Homologous Series and Their Names
| Series | General Formula | Bond | Suffix | First Member |
|---|---|---|---|---|
| Alkane | CnH2n+2 | C–C | -ane | Methane |
| Alkene | CnH2n | C=C | -ene | Ethene |
| Alkyne | CnH2n-2 | C≡C | -yne | Ethyne |
| Alkyl group | CnH2n+1 | C–C | -yl | Methyl |
Common Name vs IUPAC Name — Don't Get These Mixed Up
Board papers often test whether you know both names for the same compound. Here's a summary table worth memorising:
| Common Name | IUPAC Name |
|---|---|
| Ethylene | Ethene |
| Acetylene | Ethyne |
| Ethyl alcohol | Ethanol |
| Methyl alcohol | Methanol |
| Formic acid | Methanoic acid |
| Acetic acid | Ethanoic acid |
| Acetaldehyde | Ethanal |
| Acetone | Propanone |
| Diethyl ether | Ethoxy ethane |
| Isobutane | 2-methylpropane |
| Neopentane | 2,2-dimethylpropane |
| n-butane | Butane |
Practice: Solve These (ICSE Board-Style)
Name these structures:
- H3C–CH(CH3)–CH2–COOH
- H3C–CH(OH)–CH3
- HC≡C–HC=CH2
- H3C–CH2–CH2–CH(Cl)–CH2–CHO
Draw the structural formula for:
- 2,2-dimethylpropane
- But-1,3-diene
- 2-methyl pentan-2-ol
- 3-methyl but-1-yne
(Adapted from ICSE Chemistry-10 textbook practice questions, Chapter 9.)
Exam Tip
Want to Go Deeper? Explore the Full Chapter
ICSE Chemistry – Class X, by Dr. A. K. Saxena (Shri Balaji Publication)
This post covers IUPAC nomenclature in depth, but it's just one part of Chapter 9 – Organic Chemistry. For complete, exam-ready coverage of the whole ICSE Class 10 Chemistry syllabus, this textbook includes:
- Topicwise questions for practice
- Concept-based & application-based questions
- Examiner's Favourite – Top 111 Equations
- Competency-based questions (Recall to Synthesis)
- Genuine Past Year Questions (PYQs) from ICSE board papers
- Quick Revision boxes for rapid recall before exams
Found this useful? Explore more free ICSE Class 10 Chemistry notes and practice papers at chemsak.com.