Q.Assertion: Toxic metal ions are removed by the chelating ligands.
Reason: Chelate complexes tend to be more stable.
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Start your 14-day free trial to unlock the full solution →The assertion is true (toxic metal ions are removed by chelating ligands) and the reason is true (chelate complexes are more stable). The greater stability of the chelate complex is exactly why it can bind the toxic metal ion tightly enough to remove it from biological circulation — so the reason correctly explains the assertion. The correct option is (i).
The Concept: Why Chelation Works for Detoxification
The key idea here is the chelate effect — a thermodynamic principle that makes multidentate ligands form far more stable complexes than their monodentate counterparts. But the reason chelating ligands are used to remove toxic metal ions isn't just "they're stable." It's that they bind selectively and irreversibly enough to prevent the metal from interacting with biological molecules, while still allowing the complex to be excreted.
Let's break this down step by step.
1. Understanding the Assertion
Toxic metal ions like , , , and cause damage by binding to enzymes and proteins, disrupting their function. Chelating ligands (e.g., EDTA, dimercaprol, penicillamine) are administered as antidotes. They wrap around the metal ion like a claw (from Greek chele = claw), forming a stable, water-soluble complex that can be excreted via urine.
The assertion is true — chelation therapy is a standard medical treatment for heavy metal poisoning.
2. Understanding the Reason
Chelate complexes are indeed more stable than analogous complexes with monodentate ligands. This is the chelate effect, quantified by comparing the equilibrium constants.
For example, consider the reaction of with ammonia (monodentate) vs. ethylenediamine (bidentate):
The chelate complex is about times more stable! This stability comes from two factors:
- Entropy gain: One chelating ligand replaces several monodentate ligands, increasing the number of free particles in solution (favourable entropy).
- Enthalpy contribution: The bite angle of the chelate ring often matches the metal's preferred geometry, giving stronger bonds.
The chelate effect: — more negative for chelates means greater stability.
So the reason is true — chelate complexes are more stable.
3. Connecting Assertion and Reason — The Critical Point
Does the stability of chelate complexes explain why they remove toxic metal ions? Yes — directly. …
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