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NCERT Exemplar · Q50

Q.An unsaturated hydrocarbon 'A' adds two molecules of H2 and on reductive ozonolysis gives butane-1,4-dial, ethanal and propanone. Give the structure of 'A', write its IUPAC name and explain the reactions involved.

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Adding two H2\text{H}_2 molecules shows A is a diene. Reversing the reductive ozonolysis (reconnecting the carbonyl carbons of butane-1,4-dial, ethanal and propanone) reconstructs A as 2-methylocta-2,6-diene, (CH3)2C=CH-CH2-CH2-CH=CH-CH3\text{(CH}_3\text{)}_2\text{C=CH-CH}_2\text{-CH}_2\text{-CH=CH-CH}_3.

Reading the clues

  • A adds two molecules of H2\text{H}_2 so it contains two C=C double bonds (a diene).
  • Reductive ozonolysis (O3\text{O}_3, then Zn/H2O\text{Zn/H}_2\text{O}) cleaves each C=C and turns each doubly-bonded carbon into a carbonyl group. To find A, reverse the process: replace each C=O\text{C=O} by a C=C\text{C=C} and reconnect the fragments.

The three carbonyl products are:

  • Butane-1,4-dial, OHC-CH2-CH2-CHO\text{OHC-CH}_2\text{-CH}_2\text{-CHO} (a dialdehyde - carbonyls at both ends)
  • Ethanal, CH3-CHO\text{CH}_3\text{-CHO}
  • Propanone, (CH3)2C=O\text{(CH}_3\text{)}_2\text{C=O}

Reconstructing A

Because butane-1,4-dial carries a carbonyl at each end, it must be the central fragment, joined by a double bond on either side. Its two ends therefore reconnect to the other two fragments:

  • one end =CH-\text{=CH-} joins the ethanal carbon CH3-CH=\text{CH}_3\text{-CH=}
  • the other end =CH-\text{=CH-} joins the propanone carbon =C(CH3)2\text{=C(CH}_3\text{)}_2

Replacing the paired C=O\text{C=O} groups by C=C\text{C=C} bonds:

(CH3)2C=CH-CH2-CH2-CH=CH-CH3\text{(CH}_3\text{)}_2\text{C=CH-CH}_2\text{-CH}_2\text{-CH=CH-CH}_3

Numbering the eight-carbon chain to give the substituent the lowest locant places the methyl at C-2 and the double bonds at C-2 and C-6.

A = 2-methylocta-2,6-diene (molecular formula C9H16\text{C}_9\text{H}_{16}).

Verification by ozonolysis

(CH3)2C=CH-CH2-CH2-CH=CH-CH3→(i) O3 (ii) Zn/H2Othree carbonyls\text{(CH}_3\text{)}_2\text{C=CH-CH}_2\text{-CH}_2\text{-CH=CH-CH}_3 \xrightarrow{\text{(i) O}_3\ \text{(ii) Zn/H}_2\text{O}} \text{three carbonyls}

  • (CH3)2C=\text{(CH}_3\text{)}_2\text{C=} gives propanone, (CH3)2C=O\text{(CH}_3\text{)}_2\text{C=O}
  • =CH-CH2-CH2-CH=\text{=CH-CH}_2\text{-CH}_2\text{-CH=} gives butane-1,4-dial, OHC-CH2-CH2-CHO\text{OHC-CH}_2\text{-CH}_2\text{-CHO}
  • =CH-CH3\text{=CH-CH}_3 gives ethanal, CH3-CHO\text{CH}_3\text{-CHO}

All three match, confirming the structure. …

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