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Q.Explain Optical isomerism, and write all the geometrical isomers of coordination compound [Pt(NH3)(Br)(Cl)(Py)][Pt(NH_3)(Br)(Cl)(Py)]. How many of them are optical isomers?

(OR)
Explain, [Fe(H2O)6]+3[Fe(H_2O)_6]^{+3} is strong paramagnetic while [Fe(CN)6]−3[Fe(CN)_6]^{-3} is weak paramagnetic.
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2024Subjective· 3mImportance★★★★★
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This square-planar complex with 4 different ligands has 3 geometrical isomers, none of which are optically active.

Optical isomerism: Optical isomers (enantiomers) are pairs of stereoisomers that are non-superimposable mirror images of each other. They arise only in chiral molecules/complexes — i.e. those lacking any plane of symmetry, centre of symmetry, or improper rotation axis (SnS_n). Enantiomers are identical in most physical and chemical properties but rotate the plane of plane-polarised light in equal and opposite directions (one is dextrorotatory, the other laevorotatory).

[Pt(NH3)(Br)(Cl)(Py)][Pt(NH_3)(Br)(Cl)(Py)] is a square-planar Pt(II)Pt(II) complex (coordination number 4) of the type [MABCD][MABCD], bearing four different monodentate ligands: NH3NH_3, Br−Br^-, Cl−Cl^-, and pyridine (Py). For a square planar complex of type MABCD, three distinct geometrical arrangements are possible, distinguished by which pair of ligands is mutually trans:

  1. NH3NH_3 trans to BrBr (and ClCl trans to PyPy)
  2. NH3NH_3 trans to ClCl (and BrBr trans to PyPy)
  3. NH3NH_3 trans to PyPy (and BrBr trans to ClCl)

So there are 3 geometrical isomers.

None of these three isomers are optically active. This is because a square planar complex is inherently a flat (planar) molecule — the metal and all four monodentate ligands lie in one plane, and that plane itself is a plane of symmetry for the molecule. Since each isomer possesses a plane of symmetry, none of them is chiral.

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