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Computational nanotechnology, 2023, Volume 10, Issue 1, Pages 119–127
DOI: https://doi.org/10.33693/2313-223X-2023-10-1-119-127
(Mi cn417)
 

NANOTECHNOLOGY AND NANOMATERIALS

Factors of efficient generation of electricity in a solar cell with nanohetero junctions

R. A. Muminova, E. Z. Imamovb, R. Kh. Rakhimova, M. A. Askarovc

a Physical-Technical Institute, Uzbekistan Academy of Sciences
b Tashkent University of Information Technology
c Karakalpak State University named after Berdakh
Abstract: Abstract. The question of using non-crystalline silicon as a substrate of an effective solar cell is considered. It is shown that the creation of an effective solar cell from non-crystalline silicon is possible only at high densities of localized states in the depth of the silicon band gap. It is shown that a particularly effective conversion of solar energy into electricity is possible when non-crystalline silicon and lead chalcogenides are combined as components of hetero junctions in the nano-dimensional state. It is shown that the use of non-crystalline silicon as a substrate for an effective solar cell is possible only when combined with nanoscale lead chalcogenides. It is shown that the effects of multiexiton generation and carrier multiplication are especially characteristic of lead chalcogenides. The ranges of the effects of carrier multiplication and multi-exciton generation in nanoclusions of lead chalcogenides (PbS, PbSe) have been determined.
Keywords: non-crystalline silicon, carrier multiplication, multiexiton generation, localized state, carrier tunneling.
Document Type: Article
UDC: 621.315.592
Language: Russian and English
Citation: R. A. Muminov, E. Z. Imamov, R. Kh. Rakhimov, M. A. Askarov, “Factors of efficient generation of electricity in a solar cell with nanohetero junctions”, Comp. nanotechnol., 10:1 (2023), 119–127; Computational nanotechnology, 2023, no. 1, 119–122
Citation in format AMSBIB
\Bibitem{MumImaRak23}
\by R.~A.~Muminov, E.~Z.~Imamov, R.~Kh.~Rakhimov, M.~A.~Askarov
\paper Factors of efficient generation of electricity in a solar cell with nanohetero junctions
\jour Comp. nanotechnol.
\yr 2023
\vol 10
\issue 1
\pages 119--127
\mathnet{http://mi.mathnet.ru/cn417}
\crossref{https://doi.org/10.33693/2313-223X-2023-10-1-119-127}
\transl
\jour Computational nanotechnology
\yr 2023
\issue 1
\pages 119--122
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