Solution
Related Formula
Unpaired electrons (n) determined by field strength of ligand (Weak Field vs Strong Field)Core Logic
Let's analyze the metal configurations:
- [FeF₆]³⁻: Fe³⁺ is 3d⁵. Since F^- is a weak field ligand, no pairing occurs. Unpaired electrons n = 5.
- [CoF₆]³⁻: Co³⁺ is 3d⁶. F^- is a weak field ligand, no pairing occurs. Unpaired electrons n = 4.
- [Ni(CN)₄]²⁻: Ni²⁺ is 3d⁸. CN^- is a strong field ligand, causing pairing in square planar configuration. Unpaired electrons n = 0.
- [Ni(CO)₄]: Ni⁰ is 3d⁸ 4s². Strong field ligand CO forces 4s electrons into 3d, forming a fully paired 3d¹⁰ tetrahedral arrangement. Unpaired electrons n = 0.
Comparing the totals:
Pattern Recognition
Both nickel complexes are highly stable diamagnetic species (n=0) despite different oxidation states (+2 vs 0). Fe³⁺ high-spin complexes reach the absolute maximum transition metal limit of 5 unpaired electrons.
Chapter Mix
Class 12 Chemistry: Coordination Compounds