Now you know what a semiconductor material is, but you are wondering what elements of our good old periodic table are conductive elements. The semiconductor elements are in column IV of the classification, but be careful, all the elements of column IV are not necessarily semiconductors, it depends on the "size" of the gap of these elements. For the rest of this article we will only use silicon which is a semiconductor element. All semiconductor elements have 4 valence electrons (electrons on their outer layer)
Doping
Now let's talk about doping (no it's not the doping that you have in mind with cyclists who inject not very licit substances to improve their performance, but the result is not very different). There are two types of doping in semiconductor elements: P - positive doping - and N - negative doping.
P-type doping consists in adding atoms of column III to semiconductor materials, this will have the effect of creating materials having 7 electrons on their outer layer, these materials will therefore be positively charged and will have an electron defect, this is why P type doped semiconductors are called "holes". The atoms of these materials are therefore very conductive, because under certain conditions, an electron can be transmitted from one atom to another.
N-type doping, unlike P type doping in N-type doping, has introduced atoms belonging to column V of the classification (atoms having 5 electrons on their outer layer), when the dopant comes into contact with the silicon (or any other semiconductor element), they share pairs of electrons, and they therefore contain 8 electrons on their outer layer. Except that there were 9 electrons present on the outer layer of these atoms, an electron of the dopant is "solitary", it became a free electron capable of conducting the current.
Now that you know what's going on at the atom level, we're going to talk about more concrete things. I told you that semiconductor materials are boundary materials between insulator and conductor. In reality, these materials are conductive only if the current passing through them exceeds a certain threshold, this threshold varies according to the materials. It is 0.6V for silicon. Doping can reduce this threshold and give some properties to the materials but we will see this in a future post which will be focused on transistors and diodes.
-=Sources=- (french text)
Informations
http://almohandiss.com/index.php/espace-etudiant/electronique-de-base/853-semi-conducteurs
https://fr.wikipedia.org/wiki/Semi-conducteur
https://couleur-science.eu/?d=2015/10/28/18/55/14-cest-quoi-un-semi-conducteur
https://www.futura-sciences.com/sciences/definitions/matiere-semi-conducteur-3875/
https://openclassrooms.com/courses/l-electronique-de-zero/introduction-aux-semi-conducteurs
http://www.courstechinfo.be/Hard/SemiConducteur.html#TensionDeSeuil
Images
https://c.pxhere.com/photos/0d/4b/hard_drive_hdd_technology_digital_computer_trace_board_magnifying_glass-706647.jpg!d
https://omnilogie.fr/O/Ondes_particuli%C3%A8res_et_particulaires
https://commons.wikimedia.org/wiki/File:Isolator-metal-semicond-fr.svg
https://commons.wikimedia.org/wiki/File:Tableau_periodique_Z_et_nom_fr.svg
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