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Worked Examples · Example 8.8

Q.Write the IUPAC names of the compounds i–iv from their given structures.

(i) CH₃CH₂CH(OH)CH₂CH₂CH(CH₃)CH₂CH₃
(ii) CH₃CH₂COCH₂COCH₃
(iii) CH₃COCH₂CH₂CH₂COOH
(iv) CH≡C–CH=CH–CH=CH₂
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The IUPAC names are determined by identifying the longest carbon chain containing the principal functional group, numbering it for lowest locants, and then naming substituents. The names are: (i) 6-methyloctan-3-ol, (ii) Hexane-2,4-dione, (iii) 5-oxohexanoic acid, and (iv) Hexa-1,3-dien-5-yne.

When naming organic compounds according to IUPAC rules, the core idea is to systematically describe the molecule's structure so that anyone can draw it unambiguously from its name. This involves identifying the main carbon skeleton, the primary functional group, and any substituents, then assigning locants (numbers) to indicate their positions. The "why" behind the rules is to ensure consistency and clarity across all chemical nomenclature.

Here's how we approach each compound:

(i) CH3CH2CH(OH)CH2CH2CH(CH3)CH2CH3\text{CH}_3\text{CH}_2\text{CH(OH)}\text{CH}_2\text{CH}_2\text{CH(CH}_3)\text{CH}_2\text{CH}_3

  1. Identify the principal functional group: The presence of the −OH-\text{OH} group indicates an alcohol. The suffix will be '-ol'.
  2. Determine the longest continuous carbon chain containing the principal functional group:
    • Tracing the main chain from left to right: CH3−CH2−CH(OH)−CH2−CH2−CH(CH3)−CH2−CH3\text{CH}_3-\text{CH}_2-\text{CH(OH)}-\text{CH}_2-\text{CH}_2-\text{CH(CH}_3)-\text{CH}_2-\text{CH}_3. This chain has 8 carbons.
    • This is an octane derivative.
  3. Number the carbon chain: We must number the chain such that the principal functional group (the hydroxyl group) receives the lowest possible locant.
    • If numbered from left to right: The −OH-\text{OH} group is at C3\text{C}3. The −CH3-\text{CH}_3 substituent is at C6\text{C}6. Locants: (3,6)(3, 6).
    • If numbered from right to left: The −OH-\text{OH} group is at C6\text{C}6. The −CH3-\text{CH}_3 substituent is at C3\text{C}3. Locants: (6,3)(6, 3).
    • Comparing the first point of difference, 3<63 < 6, so numbering from left to right is correct.
  4. Identify and name substituents: There is one methyl group (−CH3-\text{CH}_3) at C6\text{C}6.
  5. Assemble the name: The substituent is named first, followed by the parent chain, and then the functional group suffix with its locant.
    • Substituent: 6-methyl
    • Parent chain: octan-
    • Functional group: 3-ol
    • Combining these gives 6-methyloctan-3-ol.

(ii) CH3CH2COCH2COCH3\text{CH}_3\text{CH}_2\text{COCH}_2\text{COCH}_3

  1. Identify the principal functional group(s): There are two ketone (-CO-\text{-CO-}) groups. The suffix will be '-dione'.
  2. Determine the longest continuous carbon chain containing both principal functional groups:
    • The chain is CH3−CH2−CO−CH2−CO−CH3\text{CH}_3-\text{CH}_2-\text{CO}-\text{CH}_2-\text{CO}-\text{CH}_3. This chain has 6 carbons.
    • This is a hexane derivative.
  3. Number the carbon chain: We must number the chain such that the ketone groups receive the lowest possible locants.
    • If numbered from left to right: The ketone groups are at C3\text{C}3 and C5\text{C}5. Locants: (3,5)(3, 5).
    • If numbered from right to left: The ketone groups are at C2\text{C}2 and C4\text{C}4. Locants: (2,4)(2, 4).
    • Comparing the first point of difference, 2<32 < 3, so numbering from right to left is correct.
  4. Identify and name substituents: There are no substituents on the main chain.
  5. Assemble the name: The parent chain name is followed by the locants for the ketone groups and the '-dione' suffix.
    • Parent chain: hexane-
    • Functional groups: 2,4-dione
    • Combining these gives Hexane-2,4-dione.

(iii) CH3COCH2CH2CH2COOH\text{CH}_3\text{COCH}_2\text{CH}_2\text{CH}_2\text{COOH}

  1. Identify the principal functional group(s): There is a carboxylic acid (−COOH-\text{COOH}) group and a ketone (−CO--\text{CO-}) group.
    • According to IUPAC priority rules, carboxylic acid has higher priority than ketone. Therefore, −COOH-\text{COOH} is the principal functional group, and the suffix will be '-oic acid'.
    • The ketone group will be treated as a substituent, using the prefix 'oxo-'.
  2. Determine the longest continuous carbon chain containing the principal functional group:
    • The chain is CH3−CO−CH2−CH2−CH2−COOH\text{CH}_3-\text{CO}-\text{CH}_2-\text{CH}_2-\text{CH}_2-\text{COOH}. This chain has 6 carbons.
    • This is a hexanoic acid derivative.
  3. Number the carbon chain: The carbon of the carboxylic acid group is always assigned C1\text{C}1.
    • C1\text{C}1: −COOH-\text{COOH}
    • C2\text{C}2: CH2\text{CH}_2
    • C3\text{C}3: CH2\text{CH}_2
    • C4\text{C}4: CH2\text{CH}_2
    • C5\text{C}5: −CO−-\text{CO}- (ketone)
    • C6\text{C}6: CH3\text{CH}_3
  4. Identify and name substituents: There is an oxo group (from the ketone) at C5\text{C}5.
  5. Assemble the name: The substituent prefix is named first, followed by the parent chain and the functional group suffix.
    • Substituent: 5-oxo
    • Parent chain: hexanoic acid
    • Combining these gives 5-oxohexanoic acid.

(iv) CH≡C–CH=CH–CH=CH2\text{CH}\equiv\text{C–CH=CH–CH=CH}_2

  1. Identify the principal functional group(s): There are both triple bonds (alkyne) and double bonds (alkene).
    • When both are present, the compound is named as an 'enyne'. The chain must include both types of multiple bonds.
  2. Determine the longest continuous carbon chain containing all multiple bonds:
    • The chain is CH≡C–CH=CH–CH=CH2\text{CH}\equiv\text{C–CH=CH–CH=CH}_2. This chain has 6 carbons.
    • This is a hexene-yne derivative.
  3. Number the carbon chain: The chain is numbered to give the multiple bonds the lowest possible set of locants. If there is a choice (i.e., the locant set is identical from both ends), the double bond is given priority for the lower number.
    • If numbered from left to right: Triple bond at C1\text{C}1, double bonds at C3\text{C}3 and C5\text{C}5. Locants: (1,3,5)(1, 3, 5).
    • If numbered from right to left: Double bond at C1\text{C}1, double bond at C3\text{C}3, triple bond at C5\text{C}5. Locants: (1,3,5)(1, 3, 5).
    • Since both numbering directions give the same set of locants (1,3,5)(1, 3, 5), we apply the tie-breaking rule: the double bond gets the lower number. Therefore, numbering from right to left is correct.
  4. Identify and name substituents: There are no substituents.
  5. Assemble the name: The parent chain name is followed by the locants for the double bonds, then 'diene', then the locant for the triple bond, and finally 'yne'. The 'a' in 'hexa' is retained before 'diene'.
    • Parent chain: hexa-
    • Double bonds: 1,3-diene
    • Triple bond: 5-yne
    • Combining these gives Hexa-1,3-dien-5-yne.
✓Final answer

The IUPAC names for the given compounds are: (i) 6-methyloctan-3-ol, (ii) Hexane-2,4-dione, (iii) 5-oxohexanoic acid, and (iv) Hexa-1,3-dien-5-yne.

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