The number of paramagnetic species from the following is _____.
JEE Chemistry 2023 Question with Solution
Answer
Correct answer:4
Step-by-step solution
Standard Method
Given: The species are
Find: The number of paramagnetic species.
- Determine the electronic configuration and geometry for each species.
In a strong field ligand, it forms a square planar complex. No unpaired electrons, so it is diamagnetic.
In a strong field ligand, it forms a tetrahedral complex. No unpaired electrons, so it is diamagnetic.
In a weak field ligand, it forms a tetrahedral complex. It has 2 unpaired electrons, so it is paramagnetic.
In a strong field ligand, it forms a low-spin octahedral complex. It has 1 unpaired electron, so it is paramagnetic.
It has 1 unpaired electron, so it is paramagnetic.
In a weak field ligand, it forms a high-spin octahedral complex. It has 4 unpaired electrons, so it is paramagnetic.
- Count the paramagnetic species.
Paramagnetic species are
Therefore, the number of paramagnetic species is .
Classification by ligand strength
Given: A set of coordination compounds with different ligands. Find: Which of them contain unpaired electrons.
Use the idea that strong field ligands such as and tend to pair electrons, while weak field ligands such as and often give high-spin configurations.
- is square planar and diamagnetic.
- is diamagnetic.
- is tetrahedral and paramagnetic.
- is low spin but still has one unpaired electron, so it is paramagnetic.
- has a configuration, so one electron remains unpaired.
- is high spin and paramagnetic.
Thus, there are paramagnetic species.
Common mistakes
Assuming every complex with a transition metal is paramagnetic is incorrect because ligand field strength can pair electrons. First determine the oxidation state and then check whether the ligand is strong field or weak field.
Treating and the same is wrong because is a strong field ligand while is a weak field ligand. This changes the geometry and the number of unpaired electrons.
Forgetting that is low spin but still paramagnetic is a common error. Low spin does not always mean diamagnetic; here is and one unpaired electron remains.
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