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Q.Complete the following reactions:

(i) Cyclobutanecarbonitrile (cyclobutane bearing a -CN group) treated with H2/Ni.
(ii) 2-Methylbenzenediazonium chloride bearing an ortho -Br substituent (ring with -CH3, an adjacent -Br, and a -N2+Cl- diazonium group) treated with H3PO2/H2O.
(iii) Benzylamine (C6H5CH2-NH2) + CHCl3 with Ethanolic KOH.
Assam AhsecAHSEC Higher Secondary (HS) 1st Year Examination 2026Subjective· 3mImportance★★★★★
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(i) nitrile + H2/Ni -> primary amine (cyclobutyl-CH2-NH2); (ii) ArN2+ + H3PO2/H2O -> Ar-H, giving o-bromotoluene; (iii) 1deg amine + CHCl3 + KOH -> isocyanide (carbylamine test), benzyl isocyanide.

(i) Reduction of a nitrile:

The -CN group on the cyclobutane ring is catalytically hydrogenated (H2 over Ni). A nitrile is reduced to a primary amine (each nitrogen gains two H, the triple bond fully saturated):

cyclobutyl-CN + 2H2 --(Ni)--> cyclobutyl-CH2-NH2 (cyclobutylmethanamine).

(ii) Deamination of an aryl diazonium salt:

Hypophosphorous acid (H3PO2) in water reduces an aromatic diazonium group, replacing -N2+ by -H (and releasing N2). Starting from the ring bearing -CH3, an ortho -Br, and the diazonium group, replacing the diazonium by hydrogen leaves methyl and bromine on the ring:

Ar-N2+ Cl- + H3PO2 + H2O --> Ar-H + N2 + H3PO3 + HCl.

Product: 2-bromotoluene (o-bromotoluene).

(iii) Carbylamine (isocyanide) reaction: …

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