Chemistry · Class 11 Science
Ch 11The p-Block Elements — Class 11 Chemistry, concept-first.
Group 13 consists of boron (B), aluminium (Al), gallium (Ga), indium (In) and thallium (Tl). This is one of the most chemically diverse groups in the periodic table — boron behaves as a typical non-metal, aluminium is a metal that still shares a good deal of chemistry with boron (a "diagonal-relationship"-like kinship…
Key concepts
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Group 13 — General Characteristics
Group 13 (B, Al, Ga, In, Tl) all share the outer configuration , but their inner cores differ sharply: B and Al have simple noble-gas cores, while Ga, In and Tl carry filled d (and, for Tl, f) subshells that shield the n…
Most relevant Q&A
- Standard electrode potential values, E°V for Al3+/Al is –1.66 V and that of Tl3+/Tl is +1.26 V. Predict about the formation of M3+ ion in so…Free
- How can you explain higher stability of BCl3 as compared to TlCl3?Free
- How would you explain the lower atomic radius of Ga as compared to Al?Preview
- In some of the reactions thallium resembles aluminium, whereas in others it resembles with group I metals. Support this statement by giving…Preview
Chapter contents
The NCERT structure, section by section. Open a section to see its questions, then read the concept-first solution.
Group 13 Elements: The Boron Family
Group 13 consists of boron (B), aluminium (Al), gallium (Ga), indium (In) and thallium (Tl). This is one of the most chemically diverse groups in the periodic table — boron behaves as a typical non-me…
Electronic Configuration
Every Group 13 element has the same outer (valence) configuration, . But their inner cores are progressively more complicated on descending the group, and it is this hidden complexity — not the visibl…
Atomic Radii
Going down any group, an extra electron shell is added at each step, so atomic radius is expected to grow steadily. Group 13 mostly follows this rule — except at gallium.
Ionization Enthalpy
If Group 13 followed the simple periodic rule, ionisation enthalpy would fall smoothly all the way down the group as atomic size increases. It does not.
Electronegativity
Electronegativity in Group 13 does not fall monotonically down the group. It decreases from boron to aluminium, but then, instead of continuing to fall for gallium, indium and thallium, it rises again…
Physical Properties
Boron stands apart from the rest of the group. It is a non-metal — an extremely hard, black solid that exists in several allotropic forms, held together by a very strong covalent crystal lattice.
Chemical Properties
Oxidation states and the inert-pair effect. Boron is so small that the sum of its first three ionisation enthalpies is enormous — far too costly for boron to simply lose three electrons and form a bar…
Important Trends and Anomalous Properties of Boron
Boron, as the first (and smallest) member of Group 13, behaves quite differently from the rest of its group — a pattern the NCERT syllabus repeats for the first member of several p-block groups.
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Some Important Compounds of Boron
Boron forms a wide range of compounds, but three of them carry the most weight in the NCERT syllabus and in industrial chemistry: borax (), orthoboric acid (), and diborane ().
Borax
Borax is the single most important compound of boron. It is a white crystalline solid usually written as , but this formula is a simplification: the real species present is the tetranuclear anionic un…
Orthoboric Acid
Orthoboric acid is a white, crystalline solid with a distinctly soapy feel. It is only sparingly soluble in cold water but dissolves much more readily in hot water.
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Diborane, B2H6
Diborane is the simplest known boron hydride.
Uses of Boron and Aluminium and their Compounds
Boron and its compounds. Boron is extremely hard, refractory, of low density and very low electrical conductivity — a combination that gives it several specialised uses.
Group 14 Elements: The Carbon Family
Group 14, the carbon family, comprises carbon (C), silicon (Si), germanium (Ge), tin (Sn) and lead (Pb).
Electronic Configuration
Every Group 14 element shares the outer valence configuration . But, exactly as in Group 13, the inner core is not the same across the group — moving from carbon down to lead, heavier members pick up…
Covalent Radius
Covalent radius increases sharply between carbon and silicon — the first two members — but the further increase from silicon down through germanium, tin and lead is comparatively small.
Ionization Enthalpy
Every Group 14 element has a higher first ionisation enthalpy than the corresponding Group 13 element — a direct consequence of Group 14's smaller atomic size and extra nuclear charge for a comparable…
Electronegativity
Because Group 14 atoms are comparatively small for their nuclear charge, they are slightly more electronegative than the corresponding Group 13 elements.
Physical Properties
All five Group 14 elements are solids at room temperature. Carbon and silicon behave as non-metals, germanium is a metalloid, and tin and lead are soft, low-melting metals.
Chemical Properties
Oxidation states. With four valence electrons, Group 14 elements mainly show +4 and +2 states (carbon additionally shows negative states in its many hydrides/organic compounds).
Important Trends and Anomalous Behaviour of Carbon
Just as boron stands apart from the rest of Group 13, carbon behaves quite differently from the rest of Group 14.
Allotropes of Carbon
Carbon's ability to show allotropy comes directly from the two properties introduced in §11.5.6: its strong tendency to catenate (link into chains/rings via very strong C–C bonds) and its unique abili…
Diamond
In diamond, every carbon atom is hybridised and covalently bonded to four neighbouring carbon atoms arranged tetrahedrally, with a C–C bond length of 154 pm (Fig.
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Graphite
Graphite has a layered structure built from planar hexagonal rings of carbon atoms (Fig. 11.4 shows the stacked hexagonal sheets).
Fullerenes
Fullerenes are made by heating graphite in an electric arc under an inert atmosphere (helium or argon).
Uses of Carbon
- Graphite fibres embedded in plastic give high-strength, lightweight composites used in tennis rackets, fishing rods, aircraft parts and canoes.
Some Important Compounds of Carbon and Silicon
Carbon and silicon each form technologically important compounds built on their bonding preferences. For carbon, the two key oxides — carbon monoxide (CO) and carbon dioxide () — are taken up first.
Carbon Monoxide
Preparation. - Direct oxidation with limited oxygen/air: - Laboratory-scale: dehydrating formic acid () with concentrated at 373 K releases water and CO.
Carbon Dioxide
Preparation. Complete combustion of carbon and carbon-containing fuels in excess air gives : In the laboratory it is conveniently made by treating calcium carbonate with dilute HCl: Commercially it is…
Silicon Dioxide, SiO2
About 95% of the earth's crust consists of silica and silicates. Silicon dioxide occurs in several interconvertible crystallographic forms — quartz, cristobalite and tridymite — which transform into o…
Silicones
Silicones are organosilicon polymers built from a repeating unit, where R is an alkyl or aryl group. They are manufactured starting from alkyl- or aryl-substituted chlorosilanes, .
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Silicates
A large number of silicate minerals occur naturally, including feldspar, zeolites, mica and asbestos. The basic structural unit common to all silicates is the tetrahedral anion (Fig.
Zeolites
If aluminium atoms replace some of the silicon atoms within the three-dimensional network, the resulting framework is called an aluminosilicate.
Exercises
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- 11.1Discuss the pattern of variation in the oxidation states of (i) B to Tl and (ii) C to Pb.Free
- 11.2How can you explain higher stability of BCl3 as compared to TlCl3?Free
- 11.3Why does boron trifluoride behave as a Lewis acid?Free
- 11.4Consider the compounds, BCl3 and CCl4. How will they behave with water? Justify.Preview
- 11.5Is boric acid a protic acid? Explain.Preview
- 11.6Explain what happens when boric acid is heated.Preview
- 11.7Describe the shapes of BF3 and BH4–. Assign the hybridisation of boron in these species.Preview
- 11.8Write reactions to justify amphoteric nature of aluminium.Preview
- 11.9What are electron deficient compounds? Are BCl3 and SiCl4 electron deficient species? Explain.Preview
- 11.10Write the resonance structures of CO3^2– and HCO3–.Preview
- 11.11What is the state of hybridisation of carbon in (a) CO3^2– (b) diamond (c) graphite?Preview
- 11.12Explain the difference in properties of diamond and graphite on the basis of their structures.Preview
- 11.13Rationalise the given statements and give chemical reactions: • Lead(II) chloride reacts with Cl2 to give PbCl4. • Lead(IV) chloride is high…Preview
- 11.14Suggest reasons why the B–F bond lengths in BF3 (130 pm) and BF4– (143 pm) differ.Preview
- 11.15If B–Cl bond has a dipole moment, explain why BCl3 molecule has zero dipole moment.Preview
- 11.16Aluminium trifluoride is insoluble in anhydrous HF but dissolves on addition of NaF. Aluminium trifluoride precipitates out of the resulting…Preview
- 11.17Suggest a reason as to why CO is poisonous.Preview
- 11.18How is excessive content of CO2 responsible for global warming?Preview
- 11.19Explain structures of diborane and boric acid.Preview
- 11.20What happens when (a) Borax is heated strongly, (b) Boric acid is added to water, (c) Aluminium is treated with dilute NaOH, (d) BF3 is reac…Preview
- 11.21Explain the following reactions (a) Silicon is heated with methyl chloride at high temperature in the presence of copper; (b) Silicon dioxid…Preview
- 11.22Give reasons : (i) Conc. HNO3 can be transported in aluminium container. (ii) A mixture of dilute NaOH and aluminium pieces is used to open…Preview
- 11.23Explain why is there a phenomenal decrease in ionization enthalpy from carbon to silicon?Preview
- 11.24How would you explain the lower atomic radius of Ga as compared to Al?Preview
- 11.25What are allotropes? Sketch the structure of two allotropes of carbon namely diamond and graphite. What is the impact of structure on physic…Preview
- 11.26(a) Classify following oxides as neutral, acidic, basic or amphoteric: CO, B2O3, SiO2, CO2, Al2O3, PbO2, Tl2O3 (b) Write suitable chemical e…Preview
- 11.27In some of the reactions thallium resembles aluminium, whereas in others it resembles with group I metals. Support this statement by giving…Preview
- 11.28When metal X is treated with sodium hydroxide, a white precipitate (A) is obtained, which is soluble in excess of NaOH to give soluble compl…Preview
- 11.29What do you understand by (a) inert pair effect (b) allotropy and (c) catenation?Preview
- 11.30A certain salt X, gives the following results. (i) Its aqueous solution is alkaline to litmus. (ii) It swells up to a glassy material Y on s…Preview
- 11.31Write balanced equations for: (i) BF3 + LiH → (ii) B2H6 + H2O → (iii) NaH + B2H6 → (iv) H3BO3 --Δ--> (v) Al + NaOH → (vi) B2H6 + NH3 →Preview
- 11.32Give one method for industrial preparation and one for laboratory preparation of CO and CO2 each.Preview
- 11.33An aqueous solution of borax is (a) neutral (b) amphoteric (c) basic (d) acidicPreview
- 11.34Boric acid is polymeric due to (a) its acidic nature (b) the presence of hydrogen bonds (c) its monobasic nature (d) its geometryPreview
- 11.35The type of hybridisation of boron in diborane is (a) sp (b) sp2 (c) sp3 (d) dsp2Preview
- 11.36Thermodynamically the most stable form of carbon is (a) diamond (b) graphite (c) fullerenes (d) coalPreview
- 11.37Elements of group 14 (a) exhibit oxidation state of +4 only (b) exhibit oxidation state of +2 and +4 (c) form M2– and M4+ ions (d) form M2+…Preview
- 11.38If the starting material for the manufacture of silicones is RSiCl3, write the structure of the product formed.Preview