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Q.Using valence bond theory [VBT], explain geometry, hybridisation and magnetic property of [CoF6]−3[\text{CoF}_6]^{-3} ion. [Atomic Number of Cobalt is 27]

Karnataka PUCKarnataka II PUC Board 2022Subjective· 3mImportance★★★★★
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Co3+\text{Co}^{3+} (3d63d^6) with the weak-field F−\text{F}^- ligand forms an outer-orbital sp3d2sp^3d^2 octahedral complex having 4 unpaired electrons → paramagnetic.

Oxidation state and configuration: In [CoF6]3−[\text{CoF}_6]^{3-} the charge on Co is +3 (each F is −1-1; overall −3-3). Cobalt (Z=27Z = 27) is [Ar]3d74s2[\text{Ar}]3d^7 4s^2; hence

Co3+: [Ar]3d6\text{Co}^{3+}:\ [\text{Ar}]3d^6

Nature of the ligand: F−\text{F}^- is a weak-field (weak) ligand, so it does not cause the 3d3d electrons to pair up. The 3d63d^6 configuration therefore remains high-spin with the distribution tt: ↑↓ ↑ ↑ ↑ ↑\uparrow\downarrow\ \uparrow\ \uparrow\ \uparrow\ \uparrow across the five 3d3d orbitals → 4 unpaired electrons.

Hybridisation and geometry: Since the inner 3d3d orbitals are not vacated, the metal uses its outer orbitals — one 4s4s, three 4p4p and two 4d4d orbitals — for hybridisation:

sp3d2 hybridisation⇒octahedral geometrysp^3d^2\ \text{hybridisation} \Rightarrow \text{octahedral geometry} …

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