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Question 67 of 72

Q.(a) What is Lanthanoid Contraction and what are the consequences of Lanthanoid Contraction ? OR

(b)
(i) Write a short notes on double salts and co-ordination compounds.
(ii) Give an example of Coordination Compound used in medicine and a biologically important Coordination Compound.
Tamil Nadu DgeTamil Nadu HSC (DGE) Board 2024Subjective· 5mImportance★★★★★
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(a) Poor shielding by the 4f electrons causes a steady, cumulative contraction in radius across the lanthanoid series, with major downstream effects on the transition metals below it. (b) Double salts fall apart into simple ions in water, unlike true coordination compounds; cisplatin and haemoglobin illustrate coordination chemistry's medical/biological importance.

(a) Lanthanoid contraction: As atomic number increases across the lanthanoid series (La to Lu), the atomic and ionic radii show a slow, steady, cumulative decrease — this is called the lanthanoid contraction. The cause is that each additional electron added on going from one lanthanoid to the next enters an inner 4f orbital; 4f electrons shield the outer (5s, 5p, 6s) electrons from the increasing nuclear charge very poorly (much more poorly than d or p electrons would), because their diffuse, penetrating shape means they do not effectively screen each other. As a result, the effective nuclear charge experienced by the outer electrons steadily increases across the series, pulling the electron cloud inward and shrinking the atomic/ionic radius at each step.

Consequences of lanthanoid contraction: (1) It causes the atomic/ionic radii of the second-row and third-row transition elements in the same group (e.g. Zr & Hf, Nb & Ta, Mo & W) to become almost identical, because the third-row elements' radii, which would otherwise be considerably larger, are 'pulled back' by the intervening lanthanoid contraction; this makes chemically separating these pairs of elements very difficult. (2) It causes a gradual decrease in the basic character of the lanthanide hydroxides, Ln(OH)3Ln(OH)_3, from La(OH)3_3 to Lu(OH)3_3, as the decreasing ionic size increases the covalent character of the M-OH bond. (3) It causes the lanthanoids themselves to have very similar chemical properties, making it notoriously difficult to separate/purify individual lanthanoids from each other.

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