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Published on: 22/01/2020
p - Block Elements I
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1.
Starting from SiCl4, prepare the following in steps not exceeding the number given in parentheses.
(i) Silicon
(ii) Linear silicon containing methyl groups only
(iii) Na2SiO3
2.
Which one is more soluble in diethyl ether, anhydrous Alcl3 or hydrated Alcl3? Explain in terms of bonding.
3.
What is crystal field splitting?
4.
(i) Silicones are used for making waterproof fabrics. Give reason.
(ii) Diamond - bad conductor of electricity.
5.
Name the building block of zeolites. Why zeolites have high porosity?
6.
Give the formula of chlorosilazanes. Explain its preparation from SiCI4.
7.
What happens to CO2 when dissolved in water?
8.
What is oxo process?
9.
Give the structure of CO and CO2.
10.
Write a note on Fisher tropsch synthesis.
11.
What is catenation ? describe briefly the catenation property of carbon.
12.
Write a short note on anomalous properties of the first element of p-block.
13.
Describe briefly allotropism in p- block elements with specific reference to carbon.
14.
1.
(i) 3SiCl4 + 4 Al ⟶ 4 AICl3 + 3 Si
(ii) n(CH3)2Si(OH)2

(iii) \(SiC{ l }_{ 4 }+4{ H }_{ 2 }O\longrightarrow \underset { orthosilicic \ acid }{ { H }_{ 4 }Si{ O }_{ 4 } } +4HCl\)
H4SiO4 \(\overset { \triangle }{ \longrightarrow } \) SiO2 + 2H2O
SiO2 + Na2CO3 ⟶ Na2SiO3 + H2O.
2.
(i) Anhydrous AlCl3 is an electro-deficient compound while hydrated AICl3 is not.
(ii) Therefore, anhydrous AICl3 is more soluble in diethyl either because the oxygen atom of ether donates a pair of electrons to the vacant p-orbital on the Al atom in AlCl3 forming a co-ordinate bond.
(iii) In case of hydrated AlCl3, Al is not electron deficient, since, H2O has already donated a pair of e- to it.

3.
In a transition metal ion, all the five d orbitals are degenerate but when it is involved in a complex formation, the degeneracy is split. This is called crystal field splitting.
4.
(i) All silicones are water repellent. This property arises due to the presence of organic side groups that surrounds the silicon which makes the molecule looks like an alkane.
(ii) In diamond, all four valance electrons of carbon are involved in bonding there is no free electrons for conductivity.
5.
(i) Zeolites have a three dimensional crystalline structure looks like a honeycomb consisting of a network of interconnected tunnels and cages.
(ii) Water molecules moves freely in and out of these pores hence they are highly porous.
6.
Chlorosilazanes is Cl3Si - NH - SiCl3.Silicon tetrachloride undergoes ammonolysis to form chlorosilazanes.
\(2Si{ Cl }_{ 4 }+{ NH }_{ 3 }\overset { 330K }{ \underset { Ether }{ \longrightarrow } } { Cl }_{ 3 }Si-NH-Si{ Cl }_{ 3 }\).
7.
The aqueous solution of carbon dioxide is slightly acidic as it forms carbonic acid.
CO2 + H2O ⇌ H2CO3 ⇌ H+ + HCO3-
8.
In oxo process, ethene is mixed with carbon monoxide and hydrogen gas to produce propanal.
CO + C2H4 + H2 ⟶ CH3CH2CHO
9.
| Oxides of Carbon | Structure | Parameters |
| CO | ![]() |
Three electron pairs are shared between carbon and oxygen. The C-O bond distance is 1.128\(\overset{o}{A}\). |
| CO2 | ![]() |
Equal bond distance for the both C-O bonds. Two C-O sigma bond, It has 3c-4e bond. |
10.
The reaction of CO with hydrogen at a pressure of less than 50 atm using metal catalysts at 500 - 700 K yields saturated and unsaturated hydrocarbons.
\(nCO+(2n+1){ H_2 }\longrightarrow C_{ n }{ H }_{ (2n+2) }+{ nH }_{ 2 }O\)
\(nCO+2n{ H }_{ 2 }\longrightarrow { C }_{ n }{ H }_{ 2n }+{ nH }_{ 2 }O\)
11.
Catenation is an ability of an element to form chain of atoms.
The conditions for catenation.
(a) The valency of element is greater than or equal to two.
(b) Element should have an ability to bond with itself
(c) The self bond must be as strong as Its bond with other elements
(d) Kinetic inertness of catenated compound towards other molecules.
(e) Carbon possesses all the above properties and forms a wide range of compounds with itself and with other elements such as H, O, N, S and halogens.
12.
In p-block elements, the first member of each group differs from the other elements of the corresponding group. The following factors are responsible for this anomalous behaviour
(i) Small size of the first member.
(ii) High ionisation enthalpy and high electronegativity.
(iii) Absence of d-orbitals in their valance shell.
13.
Allotropism:
1. Some elements exist in more than one crystalline or molecular forms in the same physical state
(a) In Greek "allos" means ⇒ Another
(b) "trope" means ⇒ Change
2. The different forms of an element are called allotropes.
Allotropy of carbon:
Carbon exists as diamond, graphite, fullerenes, carbon nanotubes and graphene.
Graphite:
1. Graphite is the most stable allotropic form of carbon at normal temperature and pressure.
2. It is soft and conducts electricity.
3. It is composed of flat two dimensional sheets of carbon atoms.
4. Each sheet is a hexagonal.
5. It is "sp2" hybridised.
6. C-C bond length is 1.41 Å
7. Each C-atom forms three σ bonds with three neighbouring carbon atoms using three of its valence electrons and the fourth electron present in the unhybridised p-orbital form a π-bond.
8. The successive C-sheets are held together by weak Vander Waals forces.
9 The distance successive sheet is 3.40 Å.
10. It is used as a lubricant either on its own or as a graphited oil.
Diamond:
1. It is very hard.
2. It is "sp3" hybridised.
3. C-C bond length is 1.54 Å
4. It is used for sharpening hard tools, cutting glasses, making bores and rock drilling.
Fullerenes:
1. These allotropes are discrete molecules such as \(C_{32}, C_{50}, C_{60}, C_{70}, C_{76}\) etc.
2. It has cage like structure
3. The C60 molecules have a "soccer" ball like structure and is called buckminster fullerene or buckyballs.
4. It has a fused ring structure consists of 20 six membered rings and 12 five membered ring.
5. Each carbon atom is "sp2" hybridised.
6. It has three σ bonds and a delocalised π bond giving aromatic character to these molecules.
7. The C-C bond distance is 1.44 Å
8. The C=C bond distance is 1.38 Å.
Carbon nanotubes:
1. Carbon nanotubes, another recently discovered allotropes, have graphite like tubes with fullerene ends.
2. Along the axis, these nanotubes are stronger than steel and conduct electricity.
3. These have many applications in nanoscale electronics, catalysis, polymers and medicine.
Graphene:
It has a single planar sheet of "sp2" hybridised carbon atoms that are densely packed in a "honeycomb crystal" lattice.
14.
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