Schottky Defect
Many ionic crystals contain point defects that preserve electrical neutrality while altering the arrangement of ions within the…
Point defects are the simplest and most common type of crystal defects found in crystalline solids. They arise when one or a few atoms, ions or molecules deviate from their ideal lattice positions. Since the disturbance is confined to only one or a few lattice sites, these defects are called point defects. Point defects play an important role in determining the physical, electrical, optical and diffusion properties of crystalline materials.
A point defect is a localized imperfection in a crystal lattice involving one or a few lattice points. It is produced due to the absence, displacement or replacement of atoms or ions at their normal lattice positions.
Point defects may be formed naturally during crystal growth or may be introduced by external factors. Even highly purified crystals contain a small number of point defects because they are thermodynamically unavoidable at temperatures above absolute zero.
Point defects are broadly classified into three major categories.
In ionic crystals, point defects also include Schottky defects, Frenkel defects and colour centres, which are discussed separately in the following sections.
A vacancy defect is produced when an atom or ion is missing from its normal lattice position. The vacant lattice site is known as a vacancy. Vacancy defects are commonly observed in metals and ionic crystals at elevated temperatures.
An interstitial defect is formed when an extra atom or ion occupies an interstitial site, which is normally unoccupied in the crystal lattice. Interstitial atoms distort the surrounding lattice because of the limited space available between regular lattice positions.
A substitutional defect occurs when a foreign atom or ion replaces a host atom or ion at its normal lattice position. Such defects are intentionally introduced in semiconductors during the doping process to modify their electrical properties.
Although point defects disturb the regular arrangement of atoms in a crystal, they are extremely useful because they modify many important material properties.
The study of point defects is essential in solid-state chemistry because many technological applications depend upon controlled defect formation. Modern electronic devices, lasers, batteries, fuel cells and semiconductor components all rely on carefully engineered crystal defects.
Point defects are localized imperfections involving one or a few lattice sites in a crystal. They are classified into vacancy, interstitial and substitutional defects. In ionic crystals, Schottky defects, Frenkel defects and colour centres are also important point defects. These defects strongly influence diffusion, electrical conductivity, optical behaviour and mechanical properties, making them highly significant in materials science and solid-state chemistry.
More notes from the same unit.
Many ionic crystals contain point defects that preserve electrical neutrality while altering the arrangement of ions within the…
An interstitial defect is a point defect in which an atom or ion occupies an interstitial site, that…
No crystalline solid found in nature is perfectly ordered. During crystal formation and even after a crystal has…
Crystalline solids are composed of atoms, ions or molecules arranged in a highly ordered three-dimensional pattern known as…