Q.Which of the following complexes show linkage isomerism?
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Start your 14-day free trial to unlock the full solution →Linkage isomerism occurs when an ambidentate ligand can bind through two different donor atoms. Complexes (i) and (iii) contain such ligands (nitro/nitrito and thiocyanato/isothiocyanato), so they show linkage isomerism. The correct options are (i) and (iii).
Linkage isomerism is a type of structural isomerism where the same ligand can coordinate to the metal ion through two different atoms. This happens only with ambidentate ligands — ligands that have more than one potential donor site. The classic examples are:
- The nitrite ion (): can bind through nitrogen (nitro, ) or through oxygen (nitrito, ).
- The thiocyanate ion (): can bind through sulfur (thiocyanato, ) or through nitrogen (isothiocyanato, ).
So the key question for each complex is: Does it contain an ambidentate ligand? If yes, linkage isomerism is possible. If the ligand is monodentate (only one donor atom) or chelating in a fixed way, it is not.
Let’s examine each option.
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Option (i):
The ligand here is . It is ambidentate — it can coordinate via N (forming the nitro isomer) or via O (forming the nitrito isomer). Both isomers are known and stable. So this complex does show linkage isomerism.
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Option (ii):
The ligand here is (carbon monoxide). CO is not ambidentate — it almost always binds through the carbon atom (carbonyl). While CO can sometimes bind through oxygen in very rare bridging modes, that is not relevant for simple mononuclear complexes like this. In standard coordination chemistry, CO is a monodentate ligand with only one effective donor atom (iii). So no linkage isomerism is possible here.
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Option (iii):
The ligand is (thiocyanate). This is a classic ambidentate ligand — it can bind through sulfur (thiocyanato) or through nitrogen (isothiocyanato). Both bonding modes are well-documented. So this complex does show linkage isomerism.
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Option (iv): …
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