Q.(a) Distinguish between primary, secondary and tertiary amines.
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Start your 14-day free trial to unlock the full solution →(a) 1°, 2° and 3° amines are distinguished mainly by Hinsberg's test (based on the acidity/solubility of the benzenesulfonamide formed) and the carbylamine test (positive only for 1° amines). (b) Polysaccharides are polymeric carbohydrates of repeating monosaccharide units joined by glycosidic linkages; starch and glycogen are storage polysaccharides while cellulose is structural.
(a) Distinguishing primary, secondary and tertiary amines
1. Hinsberg's test (using benzenesulfonyl chloride, , "Hinsberg's reagent", with aqueous KOH):
- Primary amine (, ): reacts to form an N-alkylbenzenesulfonamide, . The remaining N–H hydrogen is rendered acidic by the strongly electron-withdrawing group, so this product dissolves in excess KOH (forming the soluble potassium salt ). Acidifying this alkaline solution (e.g. with dilute HCl) reprecipitates the free sulfonamide.
- Secondary amine (, ): reacts to form an N,N-dialkylbenzenesulfonamide, . Since there is no remaining N–H hydrogen, this product has no acidic proton and is insoluble in KOH; it separates out directly as a solid/oily precipitate that does not dissolve on adding excess alkali.
- Tertiary amine (, ): has no N–H hydrogen to be substituted at all, so it simply does not react with benzenesulfonyl chloride under these conditions; the amine is recovered largely unchanged, typically observed as an oily layer that does not dissolve, and no sulfonamide is formed.
2. Carbylamine (isocyanide) test: a primary amine, when warmed with chloroform and alcoholic potassium hydroxide, gives the foul-smelling alkyl/aryl isocyanide (carbylamine):
Secondary and tertiary amines give no reaction (no foul-smelling product) under these conditions, so this test is specific for and diagnostic of primary amines.
(Reaction with nitrous acid, , is another classical distinguishing test: 1° amines liberate gas with formation of the alcohol/diazonium salt; 2° amines give a yellow oily N-nitrosamine; 3° aliphatic amines merely form an unstable, water-soluble salt with no visible change.)
(b) Polysaccharides
Polysaccharides are naturally occurring macromolecular carbohydrates built from a very large number of monosaccharide units (usually glucose) joined together by glycosidic linkages, with the general formula .
General characteristics:
- High molecular mass polymers of monosaccharides.
- Not sweet in taste (unlike mono- and disaccharides).
- Essentially non-reducing in behaviour (the vast majority of potential reducing ends are buried within the enormous polymer, so the bulk sugar does not give a positive Fehling's/Tollens' test in the way a simple sugar does).
- Generally insoluble in water, or form only colloidal (not true) solutions.
Important examples:
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