The study of materials encompasses various types, but two significant categories in electronics and conductivity are metals and semiconductors.
Metals are known for their high electrical conductivity, which is due to the delocalized electrons freely moving through the "electron sea".
Their structure allows easy flow of electricity without significant resistance.
This property is coupled with features like ductility and metallic luster, making metals useful in various fields.
Semiconductors, however, bridge the gap between metals and insulators.
They have lower conductivity than metals, but this property can be modified.
This adjustability arises from the addition of impurities in a process called doping.
By introducing specific elements into the semiconductor's lattice, electrical properties can be tailored for specific applications.
Thus, semiconductors are foundational to modern electronics, including transistors, diodes, and solar cells.
Understanding how these materials operate opens the door to innovations in technology and electronics.