| تعداد نشریات | 48 |
| تعداد شمارهها | 1,236 |
| تعداد مقالات | 10,631 |
| تعداد مشاهده مقاله | 21,620,527 |
| تعداد دریافت فایل اصل مقاله | 14,553,318 |
Electrosynthesis and optical modeling of ZnO nanostructures | ||
| Iranian chemical communication | ||
| مقاله 1، دوره 3، Issue 2, pp. 72-147, Serial No. 7، تیر 2015، صفحه 72-77 اصل مقاله (828.14 K) | ||
| نوع مقاله: Original Research Article | ||
| نویسندگان | ||
| Narges Ajami* 1؛ Ali Ehsani2؛ Ferydon Babaei2؛ Ashraf Heidaripour3 | ||
| 1Department of Chemistry, Payame Noor University, P.O.BOX 19395-3697 Tehran, Iran | ||
| 2Department of Chemistry, Faculty of science, University of Qom, P. O. Box 37185-359, Qom, Iran | ||
| 3Department of chemistry, Faculty of Science, K. N. Toosi University of Technology, Tehran,Iran | ||
| چکیده | ||
| Optical modeling was applied for obtaining absorbance spectra and band gap values for different morphology of ZnO semiconductor. In optical modeling, the relative permittivity scalars of zinc oxide coral like nanorods were calculated using the Bruggeman homogenization formalism. ZnO nano rods (ZONRs) as a nucleus layer were fabricated on the Indium Tin Oxide (ITO) by chronoamperometry (CA) in aqueous solution containing different concentration of zinc nitrate. Reduction of nitrate anion is a good resource for hydroxyl ion that with zinc anion results ZnO. The orientation and morphology of both the nucleus layer and successive coral like ZONRs were analyzed using X-ray diffraction (XRD). | ||
| کلیدواژهها | ||
| Optical modeling؛ ZnO؛ Chronoamperometry؛ Coral like nanostructure | ||
| مراجع | ||
|
[1] J. Lee, and Y. Takb, Electrochem. Solid-State. Lett., 2011, 4, 63-65.
[2] W.Y. Liang, A.D. Yoffe, Phys. Rev. Lett., 1968, 20, 59-62.
[3] M. Mekhnache, A. Drici, L. SaadHamideche, H. Benzarouk, A. Amara, L. Cattin, J.C. Bernède, M. Guerioune, Super lattices Microstruct., 2011, 49, 510-518.
[4] B.T. Tang, Q.X. Yu, H.Y. Lee, C.T. Lee, Mater. Sci. Eng., B 2001, 82, 259-261.
[5] Z. Chen, Y. Tang, L. Zhang, L. Luo, Electrochim. Acta., 2006, 51, 5870-5875.
[6] Y. Hwan Ko, M. Sub Kim, J. Su Yu, Appl. Surf. Sci., 2012, 259, 99-104.
[7] Z. Liu, L.E.J. Ya, Y. Xin, Appl. Surf. Sci., 2009, 255, 6415-6420.
[8] N. Ajami, N. Bahrami Panah, I. Danaee, Iran Polym J., 2014, 23,121-126.
[9] N. Ajami, N. Bahrami Panah, J.Nanostr. Chem. (JNSC), 2013, 76, 1-5.
[10] A. Ehsani, M.G. Mahjani, M. Bordbar, R. Moshrefi, Synth. Met., 2013, 165, 51-55.
[11] A. Ehsani, M.G. Mahjani, M. Jafarian, A. Naeemy, Electrochim. Acta., 2012, 71, 128-133.
[12] A. Ehsani, M.G. Mahjani, M. Jafarian, Synth. Met., 2012, 62, 199-204.
[13] M. Reinhard, J. Conradt, M. Braun, A. Colsmann, U. Lemmer, Heinz Kaltb, Heinz Kalt, Synth. Met., 2012, 162, 1582-1586.
[14] L. Vayssieres, K. Keis, S.E. Lindquist, A. Hagfeldt, J. Phys. Chem., B 2001, 105, 3350-3352.
[15] A. Lakhtakia, R. Messier, Sculptured thin films, Nano engineered Morphology and Optics (SPIE, USA, 2005).
[16] V.C. Venugopal, A. Lakhtakia, Proc. R. Soc. London A , 2000, 456, 125-161.
[17] G. She, X. Zhang, W. Shi, X. Fan, J.C. Chang, Electrochem. Commun., 2007, 9, 2784-2788.
[18] Lakhtakia, A. Microw. Opt. Technol. Lett., 2000, 24, 239-244.
[19] F. Babaei, H. Savaloni, Opt. Commun., 2007, 278, 221-231.
[20] F. Babaei, H. Savaloni, J. Mod. Optics, 2008, 55, 1845-1857.
[21] F. Babaei, H. Savaloni, Opt. Commun., 2007, 278, 321-328.
[22] Y.C. Liu , J.H. Hsieh , S.K. Tung , Thin Solid Films., 2006, 510, 32-38. | ||
|
آمار تعداد مشاهده مقاله: 2,994 تعداد دریافت فایل اصل مقاله: 2,774 |
||