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Here, we report the unusual behavior shown by the PbS samples prepared using a multilayer deposition approach by chemical solution deposition method. Thin samples were prepared by depositing several films at different deposition conditions on glass substrates. X-ray diffraction showed that final multilayer samples showed a peculiar variation. Even when they showed well defined structure the intensities of the peaks do not correspond to those of the initial films.
Słowa kluczowe
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Tom
Strony
16--25
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
autor
- Department of Applied Science, University of Technology, Baghdad, Iraq
autor
- Department of Applied Science, University of Technology, Baghdad, Iraq
autor
- Department of Applied Science, University of Technology, Baghdad, Iraq
Bibliografia
- [1] Ni Zhao, Tim P. Osedach, Liang-Yi Chang, Scott M. Geyer, Darcy Wagner, Magdalena T. Binda, Alexi C. Arango, Moungi G. Bawendi, Vladimir Bulovic, ACS Nano 4(7) (2010) 3743-3752.
- [2] M. A. Contreras, J. Tuttle, A. Gabor, A. Tennant, K. Ramanathan, S. Asher, A. Franz, J. Keane, L. Wang, R. Noufi, Solar Energy Materials and Solar Cells 41-42 (1996) 231-246.
- [3] Lingyun Bai, Mingsheng Li, Jun Wang Junhuai Xiang Shuwang Duo, Wenkui Li, J Mater Sci: Mater Electron (2009) 20 (2009) 319-322.
- [4] Christiana B. Honsberg, Allen M. Barnett, Douglas Kirkpatrick, IEEE ( 2006) 2565-2568.
- [5] R. Pathak, S. Joshi, P. Kotak, Multi Scale Modeling of Nano Enable Solar cell With Implementation on an HPC Setup; Third International Conference on Power Systems, Kharagpur, India, December 27-29 (2009) 1-6.
- [6] B. D. Cullity, S. R. Stock, "Elements of X – Ray Diffraction", Third edition, Prentice- Hall in the United States of America, 2001.7.
- K. Szendrei, W. Gomulya, M. Yarema, W. Heiss, M. A. Loi, Applied Physics Letters 97 (2010) 203501-1-3.
- [7] S. M. Sze, Physics of Semiconductor Devices, Second edition, Jon Wiley and Sons, New York, 1981.
- [8] A. U. Ubale, A. R. Junghare, N. A. Wadibhasme, A. S. Daryapurkar, R. B. Bankar, V. S. Sangawar, Turk. J. Phys. 31 (2007) 279-286.
- [9] Y. Hou, H. Kondoh, T. Ohta, J. Crystal Growth & Design 9 (2009) 3120-3123.
- [10] Li-Zhang, Liangbao-Yang, J. Cryst. Res. Technol. 43(10) (2008) 1026-1029.
- [11] S. Ikeda, J. Palleau, J. Torres, B. Chenevier, N. Bourhila, R. Madar, J. Appl. Phys. 86(4) (1999) 2300-2306.
- [12] Nadir Fadhil Habubi, Sami Salmann Chiad, Saad Farhan Oboudi, Ziad Abdulahad Toma, International Letters of Chemistry, Physics and Astronomy 4 (2013) 1-8.
- [13] Saad F. Oboudi, Nadir F. Habubi, Ghuson H. Mohamed, Sami S. Chiad, International Letters of Chemistry, Physics and Astronomy 8(1) (2013) 78-86.
- [14] Sujan Kumar Das, Jahid M. M. Islam, Monirul Hasan, Humayun Kabir, Md. Abdul Gafur, Enamul Hoque, Mubarak A. Khan, International Letters of Chemistry, Physics
- and Astronomy 10(1) (2013) 90-101.
- [15] J. A. Najim, J. M. Rozaiq, International Letters of Chemistry, Physics and Astronomy 10(2) (2013) 137-150.
- [16] Majid H. Hassouni, Khudheir A. Mishjil, Sami S. Chiad, Nadir F. Habubi, International Letters of Chemistry, Physics and Astronomy 11 (2013) 26-37.
- [17] C. Indira Priyadharsini, A. Prakasam, P. M. Anbarasan, International Letters of Chemistry, Physics and Astronomy 12 (2013) 82-93.
- [18] Salam Amir Yousif, Jenan Mohamed Abass, International Letters of Chemistry, Physics and Astronomy 13 (2013) 90-102.
- [19] M. M. Ismael, International Letters of Chemistry, Physics and Astronomy 14 (2013) 1-9.
- [20] Harish Kumar, Renu Rani, International Letters of Chemistry, Physics and Astronomy 14 (2013) 26-36.
- [21] Narender Budhiraja, Ashwani Sharma, Sanjay Kumar, Anupreet Kaur, N. V. Unikrishnan, International Letters of Chemistry, Physics and Astronomy 14 (2013) 69-79.
- [22] Narender Budhiraja, Ashwani Sharma, Sanjay Dahiya, Rajesh Parmar, Viji Vidyadharan, International Letters of Chemistry, Physics and Astronomy 14 (2013) 80-88.
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Bibliografia
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