يعرض 1 - 20 نتائج من 110 نتيجة بحث عن '"A. Aimaganbetov"', وقت الاستعلام: 0.53s تنقيح النتائج
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    Relation: Aimaganbetov, K., Almas, N., Kurbanova, B. A., Muratov, D., Serikkanov, A. S., Insepov, Z., & Tokmoldin, N. (2022). Electrical and Structural Characterization of Few-Layer Graphene Sheets on Quartz. Materials, 15(15), 5330. https://doi.org/10.3390/ma15155330; http://nur.nu.edu.kz/handle/123456789/7252

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    المساهمون: The Authors are grateful to the Ministry of Education and Science of the Republic of Kazakhstan for project funding, No. AP09259279., Авторы благодарят Министерство образования и науки Республики Казахстан за финансирования проекта № AP09259279.

    المصدر: Izvestiya Vysshikh Uchebnykh Zavedenii. Materialy Elektronnoi Tekhniki = Materials of Electronics Engineering; Том 25, № 2 (2022); 125-136 ; Известия высших учебных заведений. Материалы электронной техники; Том 25, № 2 (2022); 125-136 ; 2413-6387 ; 1609-3577 ; 10.17073/1609-3577-2022-2

    وصف الملف: application/pdf

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IEEE Journal of Photovoltaics. 2016; 6(1): 343—349. https://doi.org/10.1109/JPHOTOV.2015.2501729; Geisz J.F., Steiner M.A., Jain N., Schulte K., France R., McMahon W., Perl E., Friedman D. Building a six-junction inverted metamorphic concentrator solar cell. IEEE Journal of Photovoltaics. 2018; 8(2): 626—632. https://doi.org/10.1109/JPHOTOV.2017.2778567; Dimroth F, Tibbits TND, Niemeyer M, et al. Four-junction wafer-bonded concentrator solar cells. IEEE Journal of Photovoltaics. 2016; 6(1): 343—349. https://doi.org/10.1109/PVSC.2015.7356148; Sharp develops concentrator solar cell with world’s highest conversion efficiency of 43.5%: Achieved with concentrator triple-junction compound solar cell. Press release Sharp Corporation. May 31, 2012. http://sharp-world.com/corporate/news/120531.html; Slade A., Garboushian V. 27.6% efficient silicon concentrator cell for mass production. Techn. Digest. 15th Inter. Photovoltaic Sc. and Eng. Conf. Beijing, October 11–13, 2005; 701 р. https://www.researchgate.net/publication/267779112_276_Efficient_Silicon_Concentrator_Solar_Cells_for_Mass_Production; Ward J.S., Ramanathan K., Hasoon F.S., Coutts T.J., Keane J., Contreras M.A., Moriarty T., Noufi R.A. 21.5% efficient Cu (In,Ga) Se2 thin-film concentrator solar cell. Progress in Photovoltaics Research and Application. 2002; 10(1): 41—46. https://doi.org/10.1002/pip.424; Chiang C.J., Richards E.H. A twenty percent efficient photovoltaic concentrator module. Proc. IEEE Conf. on Photovoltaic Specialists. Kissimmee, FL, USA. 21–25 May, 1990. IEEE; 1990: 861—863. https://doi.org/10.1109/PVSC.1990.111743; Yoshikawa K., Kawasaki H., Yoshida W., Irie T., Konishi K., Nakano K., Uto T., Adachi D., Kanematsu M., Uzu H., Yamamoto K. Silicon heterojunction solar cell with interdigitated back contacts for a photoconversion efficiency over 26%. Nature Energy. 2017; 2(5): 17032. https://doi.org/10.1038/NENERGY.2017.32; Токмолдин Н.С., Чучвага Н.А., Вербицкий В.Н., Теруков Е.И., Титов А.С., Токмолдин С.Ж., Жолдыбаев К.С. Использование солнечных элементов с двусторонней контактной сеткой в условиях Казахстана. Журнал технической физики. 2017; 87(12): 1879—1883. https://doi.org/10.21883/JTF.2017.12.45213.2274; López A.L., Andreev V.M. (eds.). Silicon concentrator solar cells. In: Concentrator photovoltaics. Vol. 130. Springer series in optical sciences. Heidelberg, Berlin: Springer; 2007: 51—66. https://doi.org/10.1007/978-3-540-68798-6_3; https://met.misis.ru/jour/article/view/464

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