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TEXT 9 COORDINATION CHEMISTRY



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TEXT 9
COORDINATION CHEMISTRY
Complexes or coordination compounds are molecules that posess a metal center that is
bound to ligands (atoms, ions, or molecules that donate electrons to the metal). These
complexes can be neutral or charged. When the complex is charged, it is stabilized by
neighboring counter-ions.
Coordination chemistry emerged from the work of Alfred Werner, a Swiss chemist
who examined different compounds composed of cobalt (III) chloride and ammonia. Upon the
addition of hydrochloric acid, Werner observed that ammonia could not be completely
removed. He then proposed that the ammonia must be bound more tightly to the central cobalt
ion. However, when aqueous silver nitrate was added, one of the products formed was solid
silver chloride. The amount of silver chloride formed was related to the number of ammonia
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molecules bound to the cobalt (III) chloride. For example, when silver nitrate was added to
CoCl
3
·6NH
3
, all three chlorides were converted to silver chloride. However, when silver
nitrate was added to CoCl
3
·5NH
3
, only 2 of the 3 chlorides formed silver chloride. When
CoCl
3
·4NH
3
was treated with silver nitrate, one of the three chlorides precipitated as silver
chloride.
The resulting observations suggested the formation of complex or coordination
compounds. In the inner coordination sphere, which is also referred to in some texts as the
first sphere, ligands are directly bound to the central metal. In the outer coordination sphere,
sometimes referred to as the second sphere, other ions are attached to the complex ion.
Werner was awarded the Nobel Prize in 1913 for his coordination theory. The following table
is a summary of Werner's observations:


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