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Q.By giving equation of the reactions, confirm the presence of >C=O, -CHO and five -OH groups in Glucose. Also give two chemical tests of glucose and fructose.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2019Subjective· 5mImportance★★★★★
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Oxime/cyanohydrin formation shows >C=O; oxidation to gluconic acid shows -CHO; pentaacetate formation shows five -OH groups. Tollens' and Fehling's tests are positive for both glucose and fructose.

Confirming the functional groups in glucose:

  1. Presence of a carbonyl group (>C=O):

    Glucose adds hydrogen cyanide to form a cyanohydrin and reacts with hydroxylamine to form an oxime, both of which are characteristic addition reactions of a carbonyl group:

    Glucose + HCN -> glucose cyanohydrin

    Glucose + NH2OH -> glucose oxime

  2. Presence of an aldehyde group (-CHO):

    On mild oxidation with bromine water, glucose gives gluconic acid, a six-carbon monocarboxylic acid. Oxidation of only the terminal group to -COOH shows that the carbonyl is an aldehyde (-CHO):

    CH2OH(CHOH)4CHO + [O] --(Br2 water)--> CH2OH(CHOH)4COOH (gluconic acid)

    Glucose also reduces Tollens' and Fehling's reagents, again indicating a free -CHO group.

  3. Presence of five hydroxyl (-OH) groups:

    Glucose reacts with acetic anhydride (or acetyl chloride) to form glucose pentaacetate. The formation of a penta-acetyl derivative shows the presence of five -OH groups in the molecule:

    Glucose + 5(CH3CO)2O -> glucose pentaacetate + 5CH3COOH

Two chemical tests of glucose and fructose (both are reducing sugars): …

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