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Features of thermoelectric properties of some magnetic semiconductors

Maksim DiuldinPeter the Great Saint-Petersburg Polytechnic University, 195251, Saint Petersburg, RussiaAnarkhan KasimaxunovaFerghana Polytechnic Institute, 150107, Ferghana, Republic of UzbekistanZhenyue YuanPeter the Great Saint-Petersburg Polytechnic University, 195251, Saint Petersburg, RussiaVitaly TseikoFerghana Polytechnic Institute, 150107, Ferghana, Republic of UzbekistanIvan V. RudPeter the Great Saint-Petersburg Polytechnic University, 195251, Saint Petersburg, RussiaMikhail TseykoRussian technical University MIREA, 119454 Moscow, RussiaMukhayyo LatipovaFerghana Polytechnic Institute, 150107, Ferghana, Republic of UzbekistanViktor KrasnoscshekovPeter the Great Saint-Petersburg Polytechnic University, 195251, Saint Petersburg, RussiaOlga KotomenkovaPeter the Great Saint-Petersburg Polytechnic University, 195251, Saint Petersburg, RussiaAlexey CheremisinPeter the Great Saint-Petersburg Polytechnic University, 195251, Saint Petersburg, RussiaVasily RudFerghana Polytechnic Institute, 150107, Ferghana, Republic of Uzbekistan
E3S Web of Conferencesjournal2023en
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One of the most promising forms of energy production for at least several decades is thermoelectric power energy, which converts heat directly into electricity. In comparison with other methods of extraction of energy, Tthermoelectric power energy has such distinctive features as compactness, low weight, noiselessness in operation, high reliability, does not affect the growth of greenhouse gases and an increase in the radiation background. It can be recognized that low current conversion efficiency and high cost are some of the disadvantages. But there is a huge plus, because TEPG does not contribute to the depletion of natural resources and environmental pollution, such as climate warming, which has caused concern recently. In this paper, we report on some technological features of methods for obtaining semiconductor materials for thermoelectricity and their properties.

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