PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
2014 | 14 | 1 |

Tytuł artykułu

An obtaining of nanoheteroepitaxial structures with quantum dots for high effective photovoltaic devices, investigation of their properties

Treść / Zawartość

Warianty tytułu

RU
Poluchenie nanogeteroehpitaksial'nykh struktur s kvantovymi tochkami dlja vysokoehffektivnykh solnechnykh ehlementov, issledovanie ikh svojjstv

Języki publikacji

EN

Abstrakty

EN
RU

Wydawca

-

Rocznik

Tom

14

Numer

1

Opis fizyczny

p.154-163,fig.,ref.

Twórcy

autor
  • Sevastopol National University of Nuclear Energy and Industry, Kurchatjva 7, Sevastopol, 99033, Ukraine
autor
  • Sevastopol National University of Nuclear Energy and Industry, Kurchatjva 7, Sevastopol, 99033, Ukraine
autor
  • Sevastopol National University of Nuclear Energy and Industry, Kurchatjva 7, Sevastopol, 99033, Ukraine
autor
  • Volodymyr Dahl East-Ukrainian National University, Molodizhny bl., 20а, Lugansk, 91034, Ukraine

Bibliografia

  • 1. AS 1566807 USSR. MKI3 A23. A method for producing epitaxial layers A3B5 / Maronchuk I.E, Over-Garyants M.N, Maronchuk I.Y, Kulyutkina T.F, VS Polishchuk (USSR) - declared 04/01/88 publ. 01.22.90, Byul. № 24 (in Russian).
  • 2. Asai M., Ueba H., Tatsuyama C., 1985.: Heteropitaxial growth of Ge films on the Si(100)-2 Р. 1 surface // J. Appl. Phys. – Vol. 58. – 2577-2585.
  • 3. Andronov A., 2001.: Tehnoloiya obtain GaSb pn structures of the liquid phase termofotovoltaicheskih converters // Herald KHGTU. – № 4 (13). – 438- 440. (in Russian).
  • 4. Bondarets S., Bikovskiy S., Dovgalenko V., Maronchuk I., 2013.: Preparation of silicon substrates for growing quantum structures by LPE. // Collection of scientific works SNUNEI. – Sevastopol. – Vol. 2(46) – 153-161. (in Ukrainian).
  • 5. Bondarets S., Bikovskiy S., Guseva E., Maronchuk I., 2013.: Assessing the quality of the surface morphology of epitaxial structures by atomic force microscopy // Theses of reports IV Scientifically-practical conference young scientists "Methods and expedients of not destroying control of the process equipment". – Ivano-Frankivsk. – 18- 19. (in Russian).
  • 6. Cuadra L., Lopez N., Luque A., 2003.: Intermediate Band Photovoltaic Overview // 3rd World Conference on Photovoltaic Energy Conversion, Osaka, Japan. May 11-18. PCD IPLB2- 01.
  • 7. Dubrovsky V., 2009.: Theory of formation of epitaxial structures // FIZMATLIT. – M. – 350 (in Russian).
  • 8. Hoks P., 1974.: Electron optics and electron microscopy // Мir. – М. – 320. (in Russian).
  • 9. Gatos H., 1960.: The reaction of semiconductors with aqueous solutions in the surface chemical of metal and semiconductors // Wiley. – N. – Y.– 381.
  • 10. Kuranc A., 2005.: A continuous measurement of CO, CO2, HC and NOX at the work of a combustion engine fed with petrol in nstable thermal conditions, TEKA Commission of Motorization and Power Industry in Agriculture, Vol. 5, 107-115.
  • 11. Ledentsov N., Alferov G., Bimberg D., Kop’ev P., Shukin V., 1998.: Heterostructures with quantum dots: preparation, properties, lasers. Overview. // Semiconductor Physics and Technology. – Vol. 32. – № 4. – 385-410. (in Russian).
  • 12. Loginov B., 2006.: Scanning tunneling and the atomic-force microscopy: a guide to work on the microscope SММ-2000 // GОUМIFI (GU). – М. – 92 (in Russian).
  • 13. Lunin L., 2008.: Tech gradient epitaxy of semiconductor structures electronics. // Don SKNTS VS SFU. – Rostov. – 160. (in Russian).
  • 14. Maronchuk I., 2013.: Getting nanogetero epitaxial structures with quantum dots for highly efficient solar cells, used to follow their properties. // EUNU them. Volodymyr Dahl – Lugansk. – № 4 (193) – Part 2. – 122-130. (in Russian).
  • 15. Maronchuk I,. Petrash A., Sanikovich D., Smirnov S., 2013.: Structures with quantum dots obtained by LPE, investigation of their properties. // VІІI International school-conference “Actual problems of physics of semiconductors”. – Drogobich. – 183-184. (in Ukrainian).
  • 16. Maronchuk I., Petrash A., 2013.: Evaluating the quality and morphology of the initial substrates nonovergrown structures with quantum dots by atomic force microscopy. // Collection of scientific works SNUNEI. –Sevastopol. – Vol. 1(45) – 144-150. (in Ukrainian).
  • 17. Maronchuk I., Petrash A., Sanikovich D., Bondarec S., Bykovsky S., 2013.: Investigation of the surface morphology of structures with open quantum dots grown by liquid phase epitaxy. // Materials of the international conference Physics and technology of thin films and nano-systems ICPTTFN XIV-XIV. – Ivano-Frankovsk. May 20- 25. – 209. (in Ukrainian).
  • 18. Marйe P., Nakagawa K., Mulders F., Van der Veen J., Kavanagh K., 1987.: Thin epitaxial Ge- Si(111) films: study and control of morphology // Surf. Sci. – Vol. 191. – 305-328.
  • 19. Patent Ukraine UA № 94699 Cl. C 30V 19/00, C 30V 29/00, H 01L 21/20 method epitaxy growing for nanoheterostructure array of quantum dots / Maronchuk I.E., Kulyutkina T.F., Maronchuk I.I., Customer and holder Maronchuk I.E., Kulyutkina T.F., Maronchuk I.I.; Orders. 20.09.2010, Publ. 10.06.2011, Bull. №5 (in Ukrainian).
  • 20. Roszkowski A., 2006.: Agriculture and fuels of the future. TEKA Commission of Motorization and Power Industry in Agriculture, Vol. 6, 131-134.
  • 21. Sangwan K., 1990.: Etching of crystals: theory, experiment. // Wiley. – N – Y. – 496.
  • 22. Shwartz B., Robbins H., 1976.: The production technology of semi-conductor structures. // Electrochem. Soc. – Vol. 1906. – 123.
  • 23. Snyder C., Orr B., Kessler D., Sander L., 1991.: Effect of strain on surface morphology in highly strained InGaAs films. // Phys. Rev. Lett. – Vol. 66. – 3032-3035.
  • 24. Strelchenko S., Lbedev V., 1984.: Compounds A3B5. // Metallurgy. – M. – 144. (in Russian).
  • 25. United States Patent US 7,422,632 B2 Int. Cl. C30B 19/02 Epitaxial growth of structures with nanodimensional features from liquid phase by pulse cooling of substrate / Kulyutkina T.F., Maronchuk I.E., Maronchuk A.I., Naidencova M.V.; provisional application № 60/688,769 Jun.8, 2005; date of patent sep. 9, 2008.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-69c1f779-18ec-4831-9657-504baff8d6c3
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.