Q.Explain [Co(NH₃)₆]³⁺ is an inner orbital complex whereas [Ni(NH₃)₆]²⁺ is an outer orbital complex.
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Start your 14-day free trial to unlock the full solution →Co³⁺ (d⁶) can pair all its electrons into 3 of its 3d orbitals with NH₃ as ligand, freeing 2 inner d-orbitals for d²sp³ (inner orbital) bonding. Ni²⁺ (d⁸) has too many electrons to free any 3d orbital even with pairing, so it must use outer 4d orbitals: sp³d² (outer orbital).
[Co(NH₃)₆]³⁺: Cobalt here is in the +3 state: (6 electrons in the five 3d orbitals). NH₃ is a strong field ligand, so it forces all 6 d-electrons to pair up within just three of the five 3d orbitals ( set), leaving the other two 3d orbitals ( set) completely empty.
These two empty inner (3d, i.e. (n−1)d) orbitals, together with the 4s and three 4p orbitals, are used for hybridisation: d²sp³ hybridisation — an inner orbital complex. Since all electrons are paired, is diamagnetic.
[Ni(NH₃)₆]²⁺: Nickel here is in the +2 state: (8 electrons in the five 3d orbitals). Even though NH₃ is a strong field ligand, with 8 electrons to accommodate, at most 2 of the five 3d orbitals could ever become empty by pairing — but Ni²⁺'s configuration cannot free even two whole 3d orbitals (pairing 8 electrons into 3 orbitals of would still leave 2 electrons unpaired in the orbitals, which remain singly occupied and thus unavailable for bonding).
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