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Question of 135

Q.Give equation of the following reactions: [1 x 3 = 3]

(i) Oxidation of propane-1-ol with alkaline KMnO4
(ii) Bromine in CS2 with phenol
(iii) Dilute HNO3 with phenol
Haryana BsehBSEH Intermediate Board 2026Subjective· 3mImportance★★★★★
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Three characteristic reactions: alkaline KMnO4 oxidizes a primary alcohol all the way to the carboxylic acid; low-temperature bromination in CS2 (no catalyst needed, ring highly activated) gives mainly the para-bromo product; dilute nitric acid nitrates phenol to a mixture of ortho and para nitrophenols.

(i) Oxidation of propan-1-ol with alkaline KMnO4KMnO_4:

Alkaline (hot) KMnO4KMnO_4 is a strong oxidizing agent that oxidizes primary alcohols all the way to carboxylic acids (via the aldehyde, which is further oxidized under these vigorous conditions):

CH3CH2CH2OH→alk. KMnO4, ΔCH3CH2COOK→H+CH3CH2COOH (propanoic acid)CH_3CH_2CH_2OH \xrightarrow{alk.\ KMnO_4,\ \Delta} CH_3CH_2COOK \xrightarrow{H^+} CH_3CH_2COOH\ (\text{propanoic acid})

(ii) Bromine in CS2CS_2 with phenol:

At low temperature, in a non-polar solvent like CS2CS_2 (which suppresses ionization/multiple substitution), bromination of the highly activated phenol ring proceeds without any catalyst, giving predominantly the para product:

C6H5OH+Br2→CS2, 273Kp-bromophenol+HBrC_6H_5OH + Br_2 \xrightarrow{CS_2,\ 273K} p\text{-bromophenol} + HBr

(iii) Dilute HNO3HNO_3 with phenol: …

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