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Q.Explain Werner's theory of co-ordination compounds with suitable examples.

Andhra Pradesh BieapBIEAP Intermediate Board 2023Subjective· 4mImportance★★★★★
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Werner's theory explains coordination compounds through primary (ionisable) and secondary (non-ionisable, fixed-geometry) valencies of the metal, illustrated by [Co(NH3)6]Cl3.

Alfred Werner (1898) proposed the following postulates to explain the structure and bonding of coordination (complex) compounds:

  1. A metal in a coordination compound shows two types of valency (linkage):

    • Primary valency: this is ionisable and is normally equal to the oxidation state of the metal. It is satisfied by negative ions (anions). Primary valencies are non-directional.
    • Secondary valency: this is non-ionisable. It is satisfied by neutral molecules or negative ions (ligands) that are directly coordinated (bonded) to the central metal ion. The number of secondary valencies is fixed for a given metal and is called its coordination number. Secondary valencies are directional, i.e. they point towards fixed positions in space around the metal, which is what gives the coordination compound its characteristic geometrical shape (e.g. octahedral for coordination number 6, tetrahedral or square planar for coordination number 4).
  2. Every metal ion has a fixed number of secondary valencies (coordination number), e.g. Co3+ typically shows coordination number 6.

  3. The ions/groups bound by secondary valency to the metal are called ligands, and together with the metal they form the coordination sphere, usually written inside square brackets; ions bound only by primary valency remain outside the coordination sphere and are ionisable in solution.

Example - CoCl3.6NH3, formulated by Werner as [Co(NH3)6]Cl3:

  • The primary valency of Co (= 3, its oxidation state) is satisfied by 3 Cl- ions. These are outside the coordination sphere, are ionisable, and are precipitated immediately on adding AgNO3 solution (i.e. all 3 Cl- are detected as free ions). …

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