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Explain effects of lanthanoid contraction. - Chemistry

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प्रश्न

Explain effects of lanthanoid contraction.

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उत्तर १

  1. Effects on the basic strength of hydroxides: As the size of the lanthanoid ions decreases from La3+ to Lu3+, the covalent character of the hydroxides increases. Thus, the basic strength decreases. Hence, La(OH)3 is most basic, while Lu(OH)is the least basic.
  2. Ionic radii of post lanthanoids: The elements which follow the lanthanoids in the third transition series are known as post lanthanoids. As a result of lanthanoid contraction, the atomic radii (size) of the elements which follow lanthanum (Hf, Ta, W etc.) are similar to those of the elements of the previous period. There is normal increase in size from Sc to Y to La. This trend disappears after the lanthanoids, and pairs of elements Zr–Hf (group 4), Nb–Ta (group 5), Mo–W (group 6) and Tc–Re (group 7) have almost identical sizes. These atoms possess similar number of valence electrons and similar properties. These pairs of elements are called ‘chemical twins’. The elements of the second and third transition series resemble each other more closely than the elements of the first and second transition series.
  3. Difficulty in separation of lanthanoids:- Because the changes in ionic radii (size of the ions) in the lanthanoids are very small, their chemical properties are similar. This makes the separation of the lanthanoids in the pure state difficult. However, lanthanoid contraction results in slight difference in the size of the lanthanoids which results in the differences in properties such as solubility, complex formation, hydration, basic character of their hydroxides etc. Because of these differences, the lanthanoids can be separated by the ion exchange method.
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उत्तर २

I. Decrease in Basicity:

  1. As per Fajan’s principle, “With increase in the size of cation, the tendency of the hydroxide to dissociate, increases. This increases the strength of base.”
  2. The size of the Ln3+ cation decreases with increase in the atomic number, due
    to lanthanoid contraction.
  3. This decreases the ionic character of M−OH bond and gradually increases the covalent character of M−OH bond.
  4. Therefore, the basic strength of the corresponding hydroxides decreases
    from La(OH)3 to Lu(OH)3.
  5. Thus, La(OH)3 is most basic and Lu(OH)3 is least basic.

II. Ionic radii of post-lanthanoids:

  1. The elements which follow the lanthanoids in the third transition series are known as post-lanthanoids.
  2. There is a regular increase in size from Sc to Y to La.
  3. But after the lanthanoids, the increase in radii from second to third transition series almost vanishes.
  4. Pairs of elements such as Zr–Hf (group 4), Nb–Ta (group 5), Mo–W (group 6) and Tc-Re (group 7) possess almost same size. These pair of elements are called ‘chemical twins’. The properties of these elements are also similar. So, due to lanthanoid contraction, elements of the second and third series resemble each other.
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2014-2015 (March)

संबंधित प्रश्न

Define lanthanoid contraction.


What are lanthanoids?


Which among the following pairs of elements is 'not' an example of chemical twins?


Account for the following :

Zr and Hf have almost similar atomic radii.


What are the different oxidation states exhibited by the lanthanoids?


Compare the chemistry of actinoids with that of lanthanoids with special reference to electronic configuration.


Compare the chemistry of actinoids with that of the lanthanoids with special reference to atomic and ionic sizes.


Compare the chemistry of actinoids with that of the lanthanoids with special reference to chemical reactivity.


Name the members of the lanthanoid series which exhibit +4 oxidation state and those which exhibit +2 oxidation state. Try to correlate this type of behavior with the electronic configurations of these elements.


Explain, why lanthanum (Z = 57) forms La3+ ion, while cerium (Z = 58) forms Ce4+ ion?


Account for the following: 

Zn, Cd and Hg are soft metals.


What is the action of the following on lanthanoids?
a. water
b. Sulphur, heat
c. nitrogen, heat


Gadolinium belongs to 4f series. It’s atomic number is 64. Which of the following is the correct electronic configuration of gadolinium?


Which of the following lanthanoids show +2 oxidation state besides the characteristic oxidation state +3 of lanthanoids?

(i) \[\ce{Ce}\]

(ii) \[\ce{Eu}\]

(iii) \[\ce{Yb}\]

(iv) \[\ce{Ho}\]


Although +3 is the characteristic oxidation state for lanthanoids but cerium also shows +4 oxidation state because:

(i) it has variable ionisation enthalpy

(ii) it has a tendency to attain noble gas configuration

(iii) it has a tendency to attain f 0 configuration

(iv) it resembles Pb4+ 


Although +3 oxidation states is the characteristic oxidation state of lanthanoids but cerium shows +4 oxidation state also. Why?


Match the compounds/elements given in Column I with uses given in Column II.

  Column I (Compound/element) Column II (Use)
(i)  Lanthanoid oxide (a) Production of iron alloy
(ii)  Lanthanoid (b) Television screen
(iii)  Misch metal (c) Petroleum cracking
(iv)  Magnesium based alloy is constituent of (d) Lanthanoid metal + iron
(v)  Mixed oxides of lanthanoids are employed (e) Bullets
    (f) In X-ray screen

How would you account for the following:

There is a greater range of oxidation states among the actinoids than among the lanthanides.


Which of the following pairs has the same ionic size?


Which one of the lanthanoids given below is the most stable in divalent form?


Mischmetal is an alloy consisting mainly of ______.


Cerium (Z = S8) is an important member of lanthanoids. Which of the following statements about cerium is incorrect?


State a reason for the following:

La(OH)3 is more basic than Lu(OH)3.


Why is Mn2+ ion more stable than Fe2+ ion?

(Atomic numbers of Mn = 25 and Fe = 26)


Assertion: There is a continuous increase in size among Lanthanoids with an increase in atomic number.

Reason: Lanthanoids do not show Lanthanoid contraction.


Name an important alloy which contains some of the lanthanoid metals.


Mention uses of alloys.


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