Q.20 According to crystal field theory, the electronic configuration of [Ti(H2O)6]3+ in the ground state is Options: (A) eg1 t2g0 (B) t2g0 eg1 (C) eg0 t2g1 (D) t2g1 eg0

Q.20 According to crystal field theory, the electronic configuration of
[Ti(H2O)6]3+ in the ground state is

Options:

(A) eg1 t2g0

(B) t2g0 eg1

(C) eg0 t2g1

(D) t2g1 eg0

Electronic Configuration of [Ti(H2O)6]3+

Crystal Field Theory (CFT) explains the splitting of d-orbitals in the
presence of ligands. Using this theory, we determine the
ground state electronic configuration of the
octahedral complex
[Ti(H2O)6]3+.

Step 1: Oxidation State of Titanium

H2O is a neutral ligand and the overall charge on the complex
is +3.

Oxidation state of Ti = +3

Step 2: d-Electron Count

Atomic number of Ti = 22

Electronic configuration of Ti:
[Ar] 3d2 4s2

Ti3+ loses 3 electrons (2 from 4s and 1 from 3d).

Number of d-electrons = 1

Step 3: Nature of the Complex

  • Ligand: H2O (weak field ligand)
  • Geometry: Octahedral
  • Spin state: High spin

Step 4: d-Orbital Splitting

In an octahedral field, the d-orbitals split into:

  • Lower energy: t2g
  • Higher energy: eg

The single d-electron occupies the lower energy t2g orbital.

Ground State Electronic Configuration

t2g1 eg0

Correct Answer

Option (D)

Explanation of All Options

Option (A):
Represents tetrahedral notation, not applicable here.

Option (B):
Incorrect because eg orbitals cannot be filled before t2g.

Option (C):
Incorrect ordering and notation for octahedral complexes.

Option (D):
Correct configuration for one d-electron in an octahedral field.

Summary Table

Parameter Value
Metal ion Ti3+
d-electron count 1
Geometry Octahedral
Ground state configuration t2g1 eg0

Conclusion

According to crystal field theory, the single d-electron in
[Ti(H2O)6]3+ occupies the lower-energy
t2g orbital.

Hence, the correct answer is Option (D).

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