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Q.Explain Werner's theory of coordination compounds with suitable examples.

Telangana TsbieTelangana Board of Intermediate Education 2025Subjective· 4mImportance★★★★★
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Werner's theory explains coordination compounds using two kinds of valency for the metal - primary (ionisable) and secondary (fixed, directional, giving the geometry) - illustrated by [Co(NH3)6]Cl3.

Alfred Werner proposed his theory in 1898 to explain the structure and behaviour of coordination (complex) compounds. Its main postulates are:

  1. Metals exhibit two types of valency:
  • Primary valency: this is ionisable and is the same as the oxidation state of the metal. It is satisfied by negative ions (anions). It is non-directional.

  • Secondary valency: this is non-ionisable, it is fixed for a metal, and is equal to what we now call the coordination number. It is satisfied by neutral molecules or negative ions (ligands). Unlike primary valency, secondary valency is directional - it determines the geometry/shape of the coordination compound (e.g., octahedral, tetrahedral, square planar).

  1. Every metal atom/ion has a fixed number of secondary valencies (coordination number), and the groups satisfying these secondary valencies must be arranged in space around the metal in a definite geometric arrangement.

  2. The primary valencies are ionisable and are shown in solution by ionisation (they get precipitated as free ions, e.g., by AgNO3 in the case of chloride primary valencies), whereas the secondary valencies are non-ionisable (the ligands satisfying secondary valency stay bound to the metal and do not ionise in solution).

Example: CoCl3.6NH3 (or written as [Co(NH3)6]Cl3)

  • The primary valency of Co is 3 (satisfied by the 3 Cl- ions, which are ionisable, precipitated readily by AgNO3, and hence written outside the coordination sphere). …

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