Schottky Defect
Many ionic crystals contain point defects that preserve electrical neutrality while altering the arrangement of ions within the…
Crystalline solids are composed of atoms, ions or molecules arranged in a highly ordered three-dimensional pattern known as a crystal lattice. Depending upon the regularity of this arrangement, crystals are classified as perfect crystals and imperfect crystals. Although the concept of a perfect crystal is useful for understanding the basic principles of crystallography, real crystals always contain defects. These defects significantly influence the physical, electrical, optical and mechanical properties of crystalline materials.
A perfect crystal is an ideal crystal in which every lattice point is occupied by the correct atom, ion or molecule according to the crystal structure. The arrangement of particles is completely regular throughout the entire crystal without any interruption or defect.
In a perfect crystal, each atom occupies its designated lattice position, producing a completely periodic arrangement throughout the crystal.
A perfect crystal is only a theoretical concept. In practice, it is impossible to obtain a crystal that is completely free from defects because crystal growth always occurs under finite temperatures and real experimental conditions. During crystallization, thermal vibrations, impurities and mechanical stresses introduce irregularities into the lattice.
An imperfect crystal is a crystal that contains one or more structural irregularities known as crystal defects. These defects disturb the regular arrangement of atoms, ions or molecules within the crystal lattice. Almost all naturally occurring and synthetic crystals are imperfect crystals.
Crystal imperfections arise due to various reasons during crystal growth and subsequent processing.
Although crystal defects disturb the regular arrangement of atoms, they are extremely important because they determine many useful properties of solids. The electrical conductivity of semiconductors, ionic conductivity of solid electrolytes, diffusion of atoms, catalytic activity and mechanical strength of materials are all influenced by crystal defects.
| Property | Perfect Crystal | Imperfect Crystal |
|---|---|---|
| Atomic arrangement | Completely regular | Contains irregularities |
| Crystal defects | Absent | Present |
| Stoichiometry | Ideal | May deviate slightly |
| Electrical conductivity | Lower | May increase due to defects |
| Mechanical properties | Ideal | Affected by defects |
| Existence | Theoretical | Real crystals |
A perfect crystal possesses complete periodicity without any structural irregularity, whereas an imperfect crystal contains defects that disturb the regular arrangement of atoms. In reality, every crystal contains defects because of thermal motion, impurities and crystal growth conditions. These imperfections play an important role in determining the physical, chemical, electrical and mechanical properties of crystalline solids.
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…
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Point defects are the simplest and most common type of crystal defects found in crystalline solids. They arise…