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Effect of Heat Treatment on the Optical Properties of Cobalt Doped Stannic Oxide

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study investigates The effect of annealing on The optical properties of (SnO2:Co) films prepared by spray pyrolysis (SP) technique at a glass substrate temperature (Ts = 773 K). The absorbance and transmittance spectra have been recorded in order to calculate the optical constant and the optical band gap energy of the films. It was found that the annealing affects all the parameters under investigations.
Rocznik
Tom
Strony
59--70
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
autor
  • Physics Department, Education College, Al-Mustansiriyah University, Baghdad, Iraq
Bibliografia
  • [1] H. Rinnert, P. Miska, M. Vergnat, G. Schmerber, S. Colis, A. Dinia D. Muller, G. Ferblantier, A. Slaoui, Applied Physics Letters 100 (2012) 101908.
  • [2] Dengkui Miao, Qingnan Zhao, Shuo Wu, Zhendong Wang, Xingliang Zhang, Xiujian Zhao, Journal of Non-Crystalline Solids 356 (2010) 2557-2561.
  • [3] T. Serin, N. Serin, S. Karadeenz, H. Sari, N. Ugluoglu, O. Pakma, Journal of noncrystalline solid 352 (2006) 209-215.
  • [4] Seung-Yup Lee, Bynug-O. K. Park, Thin solid films 510 (2006) 154-158.
  • [5] Shadia J. Ikhmayies, Riyad N. Ahmad-Bitar, Applied surface science 225 (2008) 2627-2631.
  • [6] E. Csetinorgu, S .Goldsmith, R. L. Boxman, Thin solid film 515 (2006) 880-884.
  • [7] G. Korotchenkov, V. Brynzaring, S. Dmitriev, Materials Science and Engineering B 56 (1999) 195-204.
  • [8] A. M. Baranov, Y. A. Malov, D. F. Zaretsky, S. A. Tereshin, Solar Energy Materials & Solar Cells 60 (2000) 11.
  • [9] Yun-Hyuk Choi, Myung Yang, Seong-Hyeon Hong, Sensors and Actuators B 134 (2008) 117-121.
  • [10] D. W. Sheel, H. M. Yates, P. Evans, U. Dagkaldiran, A. Gordijn, F. Finger, Z. Remes, M. Vanecek, Thin Solid Films 517 (2009) 3061-3065.
  • [11] Willian C. Dickinson, Paul N. Cheremisionoff, "Solar Energy Technology", Handbook Part A, p. 498, (1980).
  • [12] J. I. Pankove, “OpticalProcesses in Semiconductors”, Prentice-Hall, N. J, (1971).
  • [13] S. O. Kasap, “Principles of Electronic Materials and Devices”, 2nd Ed., McGraw-Hill, New York, (2002).
  • [14[ Wighert Thomos, Kring Thomos Woff, Conference on condensed Matter 185 (1993) 279-307.
  • [15] M. A. Khashau, A. M. EL-Nagger, Optics communications 174 (2000) 445.
  • [16] Nadir Fadhil Habubi, Sami Salmann Chiad, Saad Farhan Oboudi, Ziad Abdulahad Toma, International Letters of Chemistry, Physics and Astronomy 4 (2013) 1-8.
  • [17] Saad F. Oboudi, Nadir F. Habubi, Ghuson H. Mohamed, Sami S. Chiad, International Letters of Chemistry, Physics and Astronomy 8(1) (2013) 78-86.
  • [18] J. A. Najim, J. M. Rozaiq, International Letters of Chemistry, Physics and Astronomy 10(2) (2013) 137-150.
  • [19] Majid H. Hassouni, Khudheir A. Mishjil, Sami S. Chiad, Nadir F. Habubi, International Letters of Chemistry, Physics and Astronomy 11 (2013) 26-37.
  • [20] C. Indira Priyadharsini, A. Prakasam, P. M. Anbarasan, International Letters of Chemistry, Physics and Astronomy 12 (2013) 82-93.
  • [21] Raid A. Ismail, Nadir F. Habubi, Hussam R. Abid, International Letters of Chemistry, Physics and Astronomy 4 (2014) 37-47.
  • [22] Hanan R. A. Ali, International Letters of Chemistry, Physics and Astronomy 8 (2014) 47-55.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2c309249-4181-419d-ae73-8e0c6b7750b4
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