Question:

The correct statement(s) about the complexes I (K3[CoF6]) and II (K3[RhF6]) is/are

Updated On: Nov 17, 2025
  • Both complexes are high spin.
  • Complex I is paramagnetic
  • Complex II is diamagnetic.
  • The crystal field stabilization energy of complex II is more than that of complex I.
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The Correct Option is B, C, D

Solution and Explanation

To determine the correct statements about the complexes I (K3[CoF6]) and II (K3[RhF6]), we will analyze their electronic configurations and magnetic properties.

  1. Electronic Configuration and Magnetic Properties:
    • Complex I: K3[CoF6]:
      • Here, cobalt is in the +3 oxidation state, so its electronic configuration is 3d6.
      • Fluoride (F-) is a weak field ligand, leading to high spin configuration due to a small crystal field splitting energy (Δ).
      • For a high-spin d6 configuration, the electron arrangement is t2g4eg2, resulting in unpaired electrons.
      • Thus, Complex I is paramagnetic.
    • Complex II: K3[RhF6]:
      • Here, rhodium is in the +3 oxidation state, so its electronic configuration is also 4d6.
      • Even though Fluoride is a weak field ligand, in the case of Rh3+, the pairing energy is lower for 4d elements.
      • This can lead to low-spin complexes with no unpaired electrons.
      • As a result, Complex II is diamagnetic.
  2. Crystal Field Stabilization Energy (CFSE):
    • For both Co3+ and Rh3+, with F- as the ligand, the CFSE depends on the crystal field splitting (Δ).
    • 4d elements, such as Rh, typically have greater Δ compared to 3d elements like Co. Therefore, the CFSE of complex II will be more than that of complex I.

Based on the above analysis, the correct statements are:

  • Complex I is paramagnetic.
  • Complex II is diamagnetic.
  • The crystal field stabilization energy of complex II is more than that of complex I.
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