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Q.Identify the compound produced by the reduction of Ethanenitrile with Lithium aluminium hydride : (A) Ethylamine (B) Ethanal (C) Propylamine (D) Methylamine

CBSECBSE Class XII Board 2026MCQ· 1mImportance★★★★★
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Lithium aluminium hydride reduces nitriles by adding four hydrogens across the C≡N\ce{C≡N} triple bond, converting it to a primary amine with the same carbon count. Ethanenitrile (CHX3CN\ce{CH3CN}) becomes ethylamine (CHX3CHX2NHX2\ce{CH3CH2NH2}).

Nitriles contain a carbon-nitrogen triple bond (C≡N\ce{C≡N}), one of the most polar and reactive functional groups in organic chemistry. When you treat a nitrile with a powerful reducing agent like lithium aluminium hydride (LiAlHX4\ce{LiAlH4}), you're forcing hydride ions (HX−\ce{H-}) onto that electron-deficient carbon.

The key insight: LiAlHX4\ce{LiAlH4} is a strong enough reductant to break the C≡N\ce{C≡N} triple bond completely and add hydrogen across it, but it stops at the amine stage—it doesn't break the C−N\ce{C–N} single bond. The carbon skeleton stays intact; you simply convert −C≡N\ce{–C≡N} into −CHX2−NHX2\ce{–CH2–NH2}.

Let's trace what happens to ethanenitrile:

  1. Start with the structure of ethanenitrile

    Ethanenitrile is CHX3−C≡N\ce{CH3–C≡N}. It has two carbons: one methyl group attached to the nitrile carbon.

  2. The reduction mechanism (simplified)

    LiAlHX4\ce{LiAlH4} delivers hydride ions in stages. The nitrile carbon is electrophilic, so HX−\ce{H-} attacks it. After the first hydride addition and protonation, you get an imine intermediate (CHX3−CH=NH\ce{CH3–CH=NH}). A second hydride attack on that imine carbon, followed by aqueous workup, gives the primary amine.

  3. Count the carbons

    Ethanenitrile has two carbons. Reduction doesn't add or remove carbons—it only converts the nitrile group to an amine. So the product must also have two carbons.

  4. Identify the product

    CHX3−C≡N→LiAlHX4CHX3−CHX2−NHX2\ce{CH3–C≡N} \xrightarrow{\ce{LiAlH4}} \ce{CH3–CH2–NH2}

    This is ethylamine, a two-carbon primary amine. …

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