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

Telangana TsbieTelangana Board of Intermediate Education 2022Subjective· 4mImportance★★★★★
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Werner proposed that a metal ion has both a primary (ionizable) valence and a secondary (coordination) valence, each satisfied differently and each fixed in direction for the secondary valence.

Postulates of Werner's theory

  1. In coordination compounds, metals exhibit two types of valence — primary valence (ionizable) and secondary valence (non-ionizable).
  2. The primary valence corresponds to the oxidation state of the metal ion, and is usually ionizable — it is satisfied by negative ions (anions).
  3. The secondary valence corresponds to the coordination number of the metal ion, and is non-ionizable — it is satisfied either by neutral molecules or by negative ions (ligands). The secondary valence is fixed for a given metal ion.
  4. The ions/groups bound by the secondary valence to the metal have characteristic spatial arrangements, corresponding to different coordination numbers — this explains the geometry (e.g., octahedral for coordination number 6, tetrahedral/square planar for coordination number 4).

Illustration with CoCl3·6NH3

Cobalt(III) chloride reacts with ammonia to form a series of complexes, e.g., CoCl3·6NH3. Werner explained that in this compound, cobalt has a primary valence of 3 (satisfied by 3 Cl⁻ ions, which are ionizable and precipitate readily with AgNO3) and a secondary valence of 6 (satisfied by 6 NH3 molecules, which are non-ionizable and directly bonded to the cobalt ion, arranged octahedrally). This is written using coordination formula as [Co(NH3)6]Cl3[Co(NH_3)_6]Cl_3.

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