Zobrazeno 1 - 9
of 9
pro vyhledávání: '"K. M. Kouchkarov"'
Autor:
Nicola Romeo, Mikhail S. Tivanov, B.A. Ergahsev, K. M. Kouchkarov, D. Isakov, T. M. Razykov, R. R. Khurramov, Alessio Bosio, Alessandro Romeo
Publikováno v:
Solar Energy. 230:10-12
Antimony selenide (Sb2Se3) has been developed as attractive, non-toxic and earth-abundant solar absorber candidate among the thin-film photovoltaic devices. The growth of SbxSey thin films, by atmospheric pressure chemical molecular beam deposition (
Autor:
T. M. Razykov, K. M. Kouchkarov, B. A. Ergashev, J. G. Bekmirzoyev, M. Makhmudov, Alessandro Romeo, M. Baiev, Alessio Bosio, E. Fazylov, R. R. Khurramov, Nicola Romeo, R. T. Yuldoshov
Publikováno v:
Solar Energy. 193:519-522
We have fabricated ZnxSn1−xSe (ZTSe) films for the first time. Samples were fabricated by chemical molecular beam deposition method at atmospheric pressure in hydrogen flow. ZnSe and SnSe powders with 99.999% purity were used as precursors. The tem
Autor:
T. M. Razykov, Abdurashid Mavlonov, N.K. Mamarasulov, B. A. Ergashev, Alessandro Romeo, Nicola Romeo, Alessio Bosio, K. M. Kouchkarov, O.M. Tursunkulov, R. T. Yuldoshov, Ganjaboy S. Boltaev
SnSe thin films were fabricated the first time by chemical molecular beam deposition (CMBD) in atmospheric pressure hydrogen flow using polycrystalline tin selenium (SnSe) precursors. The morphological and electrical properties of the films were stud
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4420bd6ae9b9dcd3b592d49c23da5003
http://hdl.handle.net/11562/975917
http://hdl.handle.net/11562/975917
Autor:
M. A. Alghoul, Nowshad Amin, H.S. Ullal, Y. Goswami, Kamaruzzaman Sopian, Christos Ferekides, B. A. Ergashev, Meor Yusoff Meor Sulaiman, M. K. Hakkulov, K. M. Kouchkarov, T. M. Razykov
Publikováno v:
Materials Technology. 28:15-20
We developed revolutionary novel and low cost and non-vacuum chemical molecular beam deposition method for fabrication of thin film II–VI solar cells in the atmospheric pressure gas (He, Ar and H2) flow. High quality polycrystalline CdTe films with
Autor:
H.S. Ullal, M. A. Alghoul, D.Y. Goswami, M. Y. Sulaiman, K. M. Kouchkarov, Christos Ferekides, T. M. Razykov, Kamaruzzaman Sopian, Nowshad Amin, M. K. Hakkulov, B. A. Ergashev
Publikováno v:
Applied Solar Energy. 49:35-39
CdTe films with different compositions (Cd-rich, Te-rich and stoichiometric) were fabricated by revolutionary novel and low cost chemical molecular beam deposition (CMBD) method in the atmospheric pressure hydrogen flow. Cd and Te granules were used
Publikováno v:
Solar Energy Materials and Solar Cells. 90:2255-2262
The paper presents an investigation of the effect of the grain boundaries on the conductivity and current transport in polycrystalline ZnTe, CdS and CdTe films. The temperature dependence of the conductivity of films in parallel σ ∥ and perpendicu
Autor:
K. M. Kouchkarov, T. M. Razykov
Publikováno v:
Solar Energy. 80:182-184
The nanocrystallinity of CdS, CdSe and CdTe films are studied as a function of the growth rate in chemical vapor deposition. The existence of a critical flux for condensing molecules and the presence of a critical substrate temperature is being estab
Autor:
Timothy J. Anderson, Valentin Craciun, S.S. Li, T. M. Razykov, S. Vijayaraghavan, D.Y. Goswami, R. D. Acher, K. M. Kouchkarov, Oscar D. Crisalle
Publikováno v:
Scopus-Elsevier
CdTe films with near stoichiometric compositions and cadmium-rich compositions were fabricated by a novel low-cost chemical molecular beam deposition (CMBD) technique at atmospheric pressure under hydrogen or nitrogen gas flow. X-ray diffraction anal
Autor:
M. K. Hakkulov, Kamaruzzaman Sopian, Christos Ferekides, M. A. Alghoul, M. Y. Sulaiman, Nowshad Amin, B. A. Ergashev, Y. Goswami, T. M. Razykov, H.S. Ullal, K. M. Kouchkarov
Publikováno v:
Journal of Applied Physics. 112:023517
We developed revolutionary novel and low cost and nonvacuum chemical molecular beam deposition method for fabrication of thin film II-VI solar cells in the atmospheric pressure gas (He, Ar, H2) flow. High quality polycrystalline CdTe films with diffe