Chemistry · Ch 11 — The p-Block Elements
Physical Properties
Physical Properties
Physical Properties of Group 13
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. That strong lattice is why boron has an unusually high melting point for a p-block element.
Aluminium, gallium, indium and thallium, by contrast, are all soft metals: low melting points and high electrical conductivity, the hallmark of metallic bonding. Gallium is the most striking case — its melting point is only 303 K (just above room temperature), so a sample of gallium metal will melt in your hand or on a warm summer day, yet its boiling point is a very high 2676 K. This unusually wide liquid range is exploited to make gallium-based high-temperature thermometers. Density increases steadily down the group from boron to thallium.
Table 11.2 — Atomic and Physical Properties of Group 13 Elements (a = metallic radius, b = 6-coordinate ionic radius, c = Pauling scale)
| Property | B | Al | Ga | In | Tl |
|---|---|---|---|---|---|
| Atomic number | 5 | 13 | 31 | 49 | 81 |
| Atomic mass (g/mol) | 10.81 | 26.98 | 69.72 | 114.82 | 204.38 |
| Configuration | [He]2s2 2p1 | [Ne]3s2 3p1 | [Ar]3d10 4s2 4p1 | [Kr]4d10 5s2 5p1 | [Xe]4f14 5d10 6s2 6p1 |
| Atomic radius/pm (a) | (88) | 143 | 135 | 167 | 170 |
| Ionic radius M3+/pm (b) | (27) | 53.5 | 62.0 | 80.0 | 88.5 |
| Ionic radius M+/pm | – | – | 120 | 140 | 150 |
| (kJ/mol) | 801 | 577 | 579 | 558 | 589 |
| (kJ/mol) | 2427 | 1816 | 1979 | 1820 | 1971 |
| (kJ/mol) | 3659 | 2744 | 2962 | 2704 | 2877 |
| Electronegativity (c) | 2.0 | 1.5 | 1.6 | 1.7 | 1.8 |
| Density (g/cm3, 298K) | 2.35 | 2.70 | 5.90 | 7.31 | 11.85 |
| Melting point/K | 2453 | 933 | 303 | 430 | 576 |
| Boiling point/K | 3923 | 2740 | 2676 | 2353 | 1730 |
| Property | Boron (B) | Aluminium (Al) | Gallium (Ga) | Indium (In) | Thallium (Tl) |
|---|---|---|---|---|---|
| Atomic number | 5 | 13 | 31 | 49 | 81 |
| Atomic mass (g mol-1) | 10.81 | 26.98 | 69.72 | 114.82 | 204.38 |
| Electronic Configuration | [He]2s2 2p1 | [Ne]3s2 3p1 | [Ar]3d10 4s2 4p1 | [Kr]4d10 5s2 5p1 | [Xe]4f14 5d10 6s2 6p1 |
| Atomic radius/pm (a) | (88) | 143 | 135 | 167 | 170 |
| Ionic radius M3+/pm (b) | (27) | 53.5 | 62.0 | 80.0 | 88.5 |
| Ionic radius M+/pm | - | - | 120 | 140 | 150 |
| Ionization enthalpy ΔiH1 (kJ mol-1) | 801 | 577 | 579 | 558 | 589 |
| Ionization enthalpy ΔiH2 (kJ mol-1) | 2427 | 1816 | 1979 | 1820 | 1971 |
| Ionization enthalpy ΔiH3 (kJ mol-1) | 3659 | 2744 | 2962 | 2704 | 2877 |
| Electronegativity (c) | 2.0 | 1.5 | 1.6 | 1.7 | 1.8 |
| Density /g cm-3 at 298 K | 2.35 | 2.70 | 5.90 | 7.31 | 11.85 |
| Melting point / K | 2453 | 933 | 303 | 430 | 576 |