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Q.Explain the amphoteric behaviour of amino acids.

Odisha ChseOdisha CHSE +2 Science Board Exam 2024Subjective· 3mImportance★★★★★
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Amino acids show amphoteric behaviour because they contain both an acidic carboxyl group and a basic amino group in the same molecule, allowing them to react as either an acid or a base.

An alpha-amino acid has the general structure H2N-CHR-COOH, containing:

  • a carboxyl group (-COOH), which is acidic (can donate a proton), and
  • an amino group (-NH2), which is basic (can accept a proton).

Because both groups are present in the same molecule, an intramolecular proton transfer occurs in aqueous solution: the -COOH group donates its proton to the more basic -NH2 group, forming a dipolar ion called a zwitterion:

H2N-CHR-COOH <=> +H3N-CHR-COO- (zwitterion)

This zwitterion can behave as both an acid and a base depending on the medium it is placed in:

  • In an acidic medium (excess H+), the -COO- group of the zwitterion accepts a proton, so the amino acid exists predominantly as a cation: +H3N-CHR-COOH (behaving as a base).

  • In a basic medium (excess OH-), the -NH3+ group of the zwitterion loses a proton, so the amino acid exists predominantly as an anion: H2N-CHR-COO- (behaving as an acid).

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