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Q.Write the consequences of lanthanide contraction.

Puducherry TnboardTamil Nadu HSC (DGE) Board 2017Subjective· 5mImportance★★★★★
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The poor shielding by 4f electrons causes a steady contraction in atomic/ionic size across the lanthanides, and this contraction has knock-on effects across the whole periodic table — most notably making the second and third transition series nearly identical in size.

What is lanthanide contraction: As one moves across the lanthanide series (Ce to Lu, atomic numbers 58–71), electrons are added to the deeply buried 4f subshell. Because f-orbitals have poor shielding ability (poor screening of nuclear charge), each successive electron added to the 4f subshell does not fully shield the increasing nuclear charge from the outer (5s, 5p, 6s etc.) electrons. Consequently, the effective nuclear charge experienced by the outer electrons increases steadily across the series, and the atomic/ionic radii decrease steadily and cumulatively from La to Lu. This overall shrinkage, though small at each individual step, adds up to a substantial total contraction across the 14 elements — hence "lanthanide contraction."

Consequences:

  1. Near-identical radii of second and third-row transition elements: Normally, atomic/ionic radius increases on descending a group. However, because the third transition series (starting after the lanthanides, e.g. Hf, Ta, W) follows immediately after the lanthanide contraction has already "eaten up" the expected size increase, elements like ZrZr (4d) and HfHf (5d), or NbNb and TaTa, or MoMo and WW, end up with almost identical atomic and ionic radii. This causes these pairs to have remarkably similar chemical properties and makes them exceptionally difficult to separate from one another.

  2. Decrease in basic strength of lanthanide hydroxides: As the ionic radius of Ln3+Ln^{3+} decreases from La to Lu, the Ln−OHLn-OH bond becomes progressively more covalent (less ionic) in character (smaller cation, greater polarising power). This causes the basic strength of the hydroxides to decrease steadily from La(OH)3La(OH)_3 (most basic) to Lu(OH)3Lu(OH)_3 (least basic, most amphoteric-leaning).

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