Question:

The main reason the $SiCl_4$ is easily hydrolysed as compared to $CCl_4$ is that

Updated On: Apr 26, 2024
  • Si - Cl bond is weaker than C - Cl bond
  • $SiCl_4$ can form hydrogen bonds
  • $SiCl_4$ is covalent
  • Si can extend its coordination number beyond four
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The Correct Option is D

Solution and Explanation

The main reason that $SiCl _{4}$ is easily hydrolysed as compared to $CCl _{4}$ is that $Si$ can extend its coord�nation number beyond four because it has vacant $d$-orbital. On the other hand, carbon has no $d$-orbital thus, it cannot extend its coordination number beyond four, so its halides are not attacked (hydrolysed) by water. The vacant $d$-orbitals of $Si$ can coordinate with water molecules and hence their halides are hydrolysed by water.
The hydrolysis of $SiCl _{4}$ occurs due to coordination of - OH with empty $3 d$-orbitals of Si-atom of $SiCl _{4}$ molecule.

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Concepts Used:

Group 14 Elements

The group 14 elements are also known as the carbon group. Sometimes it is also called crystallogens. The group 14 elements can be found on the right side of the periodic table. The elements of the carbon group are: 

  • Carbon - C
  • Silicon - Si
  • Germanium - Ge
  • Tin - Sn
  • Lead - Pb
  • Flerovium - FI

The group 14 elements or the carbon family belongs to the p-block of the periodic table. The carbon group is also the second group in the p-block.

Electronic Configuration:

The arrangement of electrons in the orbitals of a molecule or atom is known as electronic configuration. The general electronic configuration of the group 14 elements is ns2np2.

All group 14 elements have 4 electrons in the outer shell. Hence, the valency of the carbon family or group 14 elements is 4.

Properties of Group 14 Elements:

  • Covalent Radii
  • Ionization Enthalpy
  • Electronegativity
  • Metallic Character
  • Density
  • Four Covalent Compounds
  • The Melting and Boiling Points