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Luminescence and Raman study of Zn_4In_2O_7 nanobelts and plates

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2013-04
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Academic Press Ltd - Elsevier Science Ltd
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Luminescence of Zn_4In_2O_7 nanobelts and microplates synthesized by a thermal evaporation-deposition method, has been investigated by photoluminescence (PL) and cathodoluminescence (CL) in the scanning electron microscope (SEM). Time resolved and temperature dependent CL measurements show that an emission at 2.37 eV appears to be characteristic of the Indium-Zinc-Oxide (IZO) compound investigated. PL and waveguiding behavior of the microplates is described Raman spectra of the structures as a function of In content has been studied.
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© 2013 Elsevier Ltd. This work has been supported by MICINN (Project MAT2009-07882) and CSD2009-00013.
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[1] M.A. McCoy, R.W. Grimes, W.E. Lee, Philos. Mag. 76 (1997) 1187. [2] A. Yoshinari, K. Ishida, K. Murai, T. Moriga, Mater. Res. Bull. 44 (2009) 432. [3] N. Naghavi, A. Rougier, C. Marcel, C. Guéry, J.B. Leriche, J.M. Tarascon, Thin Solid Films 360 (2000) 233. [4] B. Kumar, H. Gong, R. Akkipeddi, J. Appl. Phys. 97 (2005) 063706. [5] K.C. Aw, Z. Tsakadze, A. Lohani, S. Mhaisalkar, Scripta Mater. 60 (2009) 48. [6] J. Jie, G. Wang, X. Han, J.G. Hou, J. Phys. Chem. B 108 (2004) 17027. [7] C.W. Na, S.Y. Bae, J. Park, J. Phys. Chem. B 109 (2005) 12785. [8] L. Wu, X. Zhang, Z. Wang, Y. Liang, H.J. Xu, Phys. D: Appl. Phys. 41 (2008) 195406. [9] X. Zhang, H. Lu, H. Gao, X. Wang, H. Xu, Q. Li, S. Hark, Cryst. Growth Des. 9 (2009) 364. [10] B. Alemán, P. Fernández, J. Piqueras, Appl. Phys. Lett. 95 (2009) 013111. [11] C. Schinzer, F. Heyd, S.F. Matar, J. Mater. Chem. 9 (1999) 1569. [12] Y. Ortega, P. Fernández, J. Piqueras Semicond, Sci. Technol. 26 (2011) 085035. [13] Y. Ortega, P. Fernández, J. Piqueras, J. Nanosci. Nanotechnol. 10 (2010) 502. [14] S.A. Studenikin, N. Colego, N. Cocivera, J. Appl. Phys. 84 (1998) 2287. [15] M. Liu, H.H. Kitai, P. Mascher, J. Lumin. 54 (1992) 35. [16] B. Lin, Z. Fu, Y. Jia, G. Liao, J. Electrochem. Soc. 148 (2001) G110. [17] D.F. Wang, T.J. Zhang, Solid State Commun. 149 (2009) 1947. [18] X. Xu, C. Guo, Z. Qi, H. Liu, J. Xu, C. Shi, C. Chong, W. Huang, Y. Zhou, C. Xu Chem, Phys. Lett. 364 (2002) 57. [19] A. Urbieta, P. Fernández, J. Piqueras, Mater. Chem. Phys. 132 (2012) 1119. [20] K.A. Alim, V.A. Fonoberov, M. Shamsa, A.A. Balandin, J. Appl. Phys. 97 (2005) 124313. [21] R. Cuscó, E. Alarcón-Lladó, J. Ibáñez, L. Artús, J. Jiménez, B. Wang, M.J. Callahan, Phys. Rev. B 75 (2007) 165202. [22] S. Singamaneni, M. Gupta, R. Yang, M.M. Tomczak, R.R. Naik, Z.L. Wang, V.V. Tsukruk, Nano 3 (2009) 2593.
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