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Q.Explain the geometry and magnetic nature of the complex ion [FeF6]3- on the basis of valence bond theory. OR Explain the geometry and the magnetic nature of the complex ion [Ni(CN)4]2- on the basis of valence bond theory.

Rajasthan RbseRajasthan Board Senior Secondary Examination 2025Subjective· 3mImportance★★★★★
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In [FeF6]3-, F- (a weak-field ligand) cannot pair up Fe3+'s d electrons, so the complex is high-spin, uses outer d orbitals (sp3d2 hybridisation, octahedral), and is strongly paramagnetic with 5 unpaired electrons.

Step 1 - oxidation state and configuration of Fe:

Ligand F- carries charge -1 x 6 = -6; overall complex ion charge is -3, so Fe's oxidation state x satisfies: x + (-6) = -3, giving x = +3.

Fe3+ configuration: [Ar] 3d5 (5 electrons in the d subshell).

Step 2 - nature of the ligand (F-) and spin state:

F- is a WEAK FIELD ligand (low in the spectrochemical series). A weak field ligand cannot supply enough crystal-field/ligand-field splitting energy to force pairing of the 5 d-electrons into the lower orbitals. So all 5 electrons remain UNPAIRED, distributed one to each of the five d orbitals (t2g^3 eg^2) - this is a HIGH SPIN complex.

Step 3 - hybridisation and geometry (Valence Bond Theory): …

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