210
Views
7
CrossRef citations to date
0
Altmetric
Original Articles

Properties of ZnTe Thin Films on Silicon Substrate

, , , &
Pages 118-126 | Received 26 Oct 2014, Accepted 15 Jan 2015, Published online: 06 Feb 2016

References

  • E. E. Khawaja, M. A. Al-Daous, SMA Durrani, M. F. Al-Kuhaili: Chemical inhomogeneity in Zinc telluride thin films prepared by thermal evaporation. Thin Solid Films 485, 16–21 (2005).
  • J De Merchant, M Cocivera: Properties of zinc telluride containing impurities introduced during spray pyrolysis. J Electrochem Soc. 143, 4054–4059 (1996).
  • T Ota, K Takahashi: Non-polarized memory-switching characteristics of ZnTe thin films. Solid State Electron. 16, 1089–1092 (1973).
  • T Mahalingam, V. S. John, S Rajendran, G Ravi, P. J. Sebastian: Annealing studies of electrodeposited zinc telluride thin films. Surf Coat Tech. 155, 245–249 (2002).
  • M. A. Bozzini, M. A. Baker, P. L. Cavallotti, E Cerri, C Lenardi: Electrodeposition of ZnTe for Photovoltaic Cells. Thin Solid Films 361, 388–395 (2000).
  • K. P. Acharya, A Erlacher, B Ullrich: Optoelectronic properties of ZnTe/Si heterostructures formed by nanosecond laser deposition at different Nd:YAG lines. Thin Solid Films 515, 4066–4069 (2007).
  • A. A. Ibrahim, N. Z. El-Sayed, M. A. Kaid, A Ashour: Structural and electrical properties of evaporated ZnTe thin films. Vacuum 75, 189–194 (2004).
  • K. R. Gowrish, V. B. Kasturi, G. K. Shivakumar: The effect of substrate temperature on the structural, optical and electrical properties of vacuum deposited ZnTe thin films. Vacuum 83, 1485–1488 (2009).
  • A Barati, A Klein, W Jaegermann: Deposition and characterization of highly p-type antimony doped ZnTe thin films. Thin Solid films 517, 2149–2152 (2009).
  • K. R. Murali, M Ziaudeen, N Jayaprakash: Structural and electrical properties of brush plated ZnTe films. Solid-State Electron. 50, 1692–1695 (2006).
  • R. N. Bicknell-Tassius, T. A. Kuhn, W Ossau: Photoassisted MBE of CdTe thin films. Appl Surf Sci. 36, 95–101 (1989).
  • R. L. Gunshor, L. A. Koladziejski, N Otsuka, S Datta: ZnSe-ZnMnSe and CdTe-CdMnTe superlattices. Surf Sci. 174, 522–533 (1986).
  • A. S. Arico, D Silvestro, P. L. Antonucci, N Giordano, V Antonucci: Electrodeposited thin film ZnTe semiconductors for photovoltaic applications. Adv Perform Mater. 4, 115–125 (1997).
  • P Link, T Schmidt, S Bauer, H. P. Wagner, H Leiderer, W Gebhardt: Characterization of hot wall epitaxy grown ZnTe layers. J Appl Phys. 2, 3730–3734 (1992).
  • U Pal, S Saha, A. K. Chaudhuri, V. V. Rao, H. D. Banerjee: Some optical properties of evaporated ZnTe films. J Phys D: Appl Phys. 22, 965–970 (1989).
  • W. S. Chen, C. H. Hsu, W. H. Kao, Y. T. Yu, P. C. Yang, C. F. Tseng, C. H. Lai, Y. M. Lee, H. W. Yang, J. S. Lin: Electrical Characteristics of ZnTe Thermoelectric Thin Films. Appl Mech Mater. 535, 688–691 (2014).
  • AKS Aquili, Z Ali, A Maqsood: Optical and structural properties of two-sourced evaporated ZnTe thin films. Appl Surf Sci. 167, 1–11 (2000).
  • C. H. Hsu, C. F. Tseng, Y. T. Yu, P. C. Yang, C. H. Lai, J. S. Lin, H. W. Yang: Effect of Annealing Temperature on Electrical Properties of ZnTe layers grown by Thermal Evaporation. Adv Mater Res. 2013;608–609:1314–1317.
  • S. M. Lee, Y. H. Joo, C. I. Kim: Influences of film thickness and annealing temperature on properties of sol–gel derived ZnO–SnO2 nanocomposite thin film. Appl Surf Sci. 320, 494–501 (2014).
  • X Zhao, E. J. Liu, R. V. Ramanujan, J. S. Chen: Effects of rapid thermal annealing on structural, magnetic and optical properties of Ni-doped ZnO thin films. Curr Appl Phys. 12, 834–840 (2012).
  • O Nakagawara, Y Toyota, M Kobayashi, Y Yoshino, Y Katayama, H Tabata, T Kawai: Electrical properties of (Zr,Sn)TiO4 dielectric thin film prepared by pulsed laser deposition. J Appl Phys. 80, 388–392 (1996).
  • S. M. Chang, R. A. Doong: ZrO2 thin films with controllable morphology and thickness by spin-coated sol–gel method. Thin Solid Films 489, 17–22 (2005).
  • T. M. Razykov, S. Z. Karazhanov: Effect of the grain boundaries on the conductivity and current transport in II–VI films. Sol Energy Mater Sol Cells 90, 2255–2262 (2006).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.