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Q.Explain Werner's Theory of Coordination Compounds with suitable examples.

Andhra Pradesh BieapBIEAP Intermediate Board 2026Subjective· 4mImportance★★★★★
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Werner's theory of coordination compounds proposes that metals exhibit two kinds of valency — primary (ionisable) and secondary (non-ionisable, fixed, and spatially directional) — which together explain the composition and geometry of complexes like [Co(NH3)6]Cl3.

Alfred Werner, studying compounds like CoCl3.6NH3, CoCl3.5NH3, CoCl3.4NH3 (which showed different numbers of ionisable chloride ions despite the same overall formula ratio), proposed the following postulates:

1. Two types of valency:

  • Primary valency (ionisable valency): This is the metal's oxidation state. It is satisfied by negative ions and is non-directional (does not decide geometry).
  • Secondary valency (non-ionisable valency): This equals the coordination number of the metal. It is satisfied by neutral molecules or negative ions (called ligands) and is fixed and directional — it determines the geometrical shape of the complex.

2. Every metal tends to satisfy both its primary and secondary valencies. Primary valency is satisfied by negative ions only; secondary valency may be satisfied by negative ions, neutral molecules, or both.

3. The ions/groups satisfying secondary valency are directed towards fixed positions in space, giving the complex a definite geometry (e.g. octahedral for coordination number 6, tetrahedral/square planar for coordination number 4).

Illustration — CoCl3.6NH3:

Werner formulated this as [Co(NH3)6]Cl3.

  • Primary valency of Co = 3, satisfied by the 3 Cl- ions, which lie outside the coordination sphere and are freely ionisable (all 3 Cl- are precipitated instantly by AgNO3).
  • Secondary valency (coordination number) of Co = 6, satisfied by the 6 NH3 molecules, which lie inside the coordination sphere (written in square brackets) and are non-ionisable. …

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