Coordination Compounds: JEE Main Chemistry Question with Solution
If Ni2+ is replaced by Pt2+ in the complex [NiCl2Br2]2−, which of the following properties are expected to get changed?
A. Geometry
B. Geometrical isomerism
C. Optical isomerism
D. Magnetic properties
Your answer stays private
What feels right?
Hint 1 of 2
What are the geometries of [NiCl2Br2]2− and [PtCl2Br2]2−, respectively?
No score. Commit to your first instinct. We’ll show what your mind noticed and what it missed.
Step-by-step solutionView
Correct answer
Replacing 3d Ni2+ with 5d Pt2+ changes the complex from tetrahedral (paramagnetic, no geometrical isomerism) to square planar (diamagnetic, shows cis/trans geometrical isomerism), altering properties A, B, and D.
Option analysis
Why each option works or fails
A · A, B and C
Believing that square planar complexes of the form [MA2B2] exhibit optical isomerism, or overlooking the change in magnetic behavior. Square planar complexes of the type [MA2B2] have an in-plane mirror symmetry and are achiral; thus optical isomerism remains absent in both complexes.
B · A, B and D
None. This correctly identifies that geometry changes from tetrahedral to square planar, geometrical isomerism changes from none to cis/trans active, and magnetic properties change from paramagnetic (2 unpaired electrons) to diamagnetic (0 unpaired electrons). Identify that 5d metals have high crystal field splitting, forcing low-spin dsp2 square planar geometry.
C · A and D
Overlooking that square planar [PtCl2Br2]2− can exist as cis and trans geometrical isomers, whereas tetrahedral [NiCl2Br2]2− cannot. Remember that a transition from tetrahedral to square planar introduces geometrical isomerism (cis and trans forms).
D · B and C
Ignoring the structural and magnetic change between 3d weak-field coordination and 5d strong crystal field splitting. Account for both geometry change (sp3 tetrahedral vs dsp2 square planar) and spin pairing in 5d metal complexes.
Reviewed route
Solution
StepWorking
01concept
For Ni2+ (3d8) with weak field halide ligands (Cl−,Br−), crystal field splitting Δt is small, leading to sp3 hybridization, tetrahedral geometry, paramagnetism (2 unpaired electrons), no geometrical isomerism, and no optical isomerism. For Pt2+ (5d8), Δo/Δsp is very large due to high effective nuclear charge and 5d radial expansion, forcing pairing to form dsp2 square planar geometry, diamagnetism (0 unpaired electrons), cis/trans geometrical isomerism, and no optical isomerism.
02option_verdict
Neither [NiCl2Br2]2− (tetrahedral Ma2b2 has planes of symmetry) nor [PtCl2Br2]2− (square planar Ma2b2 has molecular plane of symmetry) exhibits optical isomerism, so optical isomerism (C) does not change.
03option_verdict
Geometry changes (tetrahedral to square planar: A), geometrical isomerism changes (0 isomers to 2 isomers [cis/trans]: B), and magnetic properties change (paramagnetic μ≈2.83 BM to diamagnetic μ=0: D). Hence A, B, and D change.
04option_verdict
Overlooks that geometrical isomerism (B) also changes because square planar Ma2b2 displays cis-trans isomerism whereas tetrahedral Ma2b2 cannot.
05option_verdict
Omits geometry (A) and magnetic properties (D) which clearly change between sp3 (paramagnetic) and dsp2 (diamagnetic), and incorrectly includes optical isomerism (C).
✓discriminator
Identify that 5d transition metal complexes with coordination number 4 are almost always square planar and low-spin, shifting geometry (Td→D4h), spin state (paramagnetic → diamagnetic), and enabling cis/trans GI, while neither geometry allows optical isomerism.
✓ Source and academic review↓
Question type
Single correct
Exam relevance
JEE Main · Chemistry
Concepts assessed
Chemistry
Academic status
Reviewed by official_key
Source
pyq
Editorial review
7 September 2026
Quick checks
Students also ask
Why is [PtCl2Br2]2− square planar even though halide ligands are weak field ligands?
For 4d and 5d series transition metals (like Pt2+), the crystal field splitting parameter Δ is very large (about 40-50% higher than 3d). Consequently, all ligands behave as strong field ligands and cause pairing, giving dsp2 square planar geometry.