INCREASING ENERGY EFFICIENCY IN SOLAR PANELS BY CHANGING THE COMPOSITION OF SEMICONDUCTORS
Keywords:
solar panels, semiconductors, impurities, photoelectric effect, silicon, germanium, efficiency, losses.Abstract
Solar energy is becoming an important source of sustainable and environmentally friendly energy in the modern world. Solar panels have become one of the main directions in the energy supply for sunny countries. However, the energy efficiency of solar panels is still limited, and continuous research is being conducted in this area to increase efficiency. The method of introducing impurities (doping) into semiconductor materials allows you to significantly increase the efficiency of solar panels. This article provides information on the principle of operation of solar panels, the importance of introducing impurities.
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References
Akramov H and b. Photoelectric phenomena in semiconductors. T. 1994.
Sobirova T. The importance of semiconductor materials in solar panels //Eurasian Journal of Technology and Innovation. – 2023. – T. 1. – No. 2. – P. 75-84.
Karimov I.N., Ermatov Sh , Nosirov M.Z., Abduazimov B.A ―Laser physics and technology‖- Andijan, 2016, 57с
Sobirova, T. (2023, April). Advantages of nanotechnology and its role in the industry. In International Conference On Higher Education Teaching (Vol. 1, No. 1, pp. 71-75)
Sobirova, T. A. (2022). Semiconductor lasers. Economics and society, (6-1 (97)), 1181-1187.
Sobirova, T. A. (2024). IMPORTANCE OF SEMICONDUCTOR MICROCIRCUITS IN MICROELECTRONICS AND INDUSTRY. Scientific and Technical Journal Namangan Institute of Engineering and Technology. Volume 8 (477-482)
Sobirova Tursunoy Abdipatto's daughter. (2024). DEFECTS IN CRYSTALS AND THEIR PROPERTIES.Ethiopian International Journal of Multidisciplinary Research, 11(05), 246–250.
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