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Q.Explain on the basis of Valence Bond theory, the geometry and hybridization of [Co(NH3)6]3+ ion.

Himachal HpboseHPBOSE Plus Two Board 2022Subjective· 2mImportance★★★★★
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NH3 is a strong-field ligand, so it forces the d-electrons of Co3+ to pair up, freeing two 3d orbitals for d2sp3 hybridization and an octahedral, diamagnetic complex.

Step 1 — oxidation state and configuration of Co. In [Co(NH3)6]3+, cobalt is in the +3 state. Free Co3+ has the configuration 3d63d^6 (Co atomic number 27: [Ar]3d7 4s2 → losing 3 electrons gives 3d6).

Step 2 — effect of the ligand field. NH3 is a strong-field ligand (high in the spectrochemical series). Under its influence, the 6 d-electrons of Co3+ are forced to pair up within the lower-energy t2gt_{2g} set, leaving 2 of the 5 inner 3d orbitals completely empty: t2g6eg0t_{2g}^6 e_g^0.

Step 3 — hybridization. These 2 empty inner 3d orbitals mix with one 4s and three 4p orbitals to give 6 equivalent d2sp3d^2sp^3 hybrid orbitals, pointing towards the corners of a regular octahedron.

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