Copyright (c) 2013 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Synthesis and Characterization of Uniform ZnS Sphere Crystalline by Using a Zinc Coordination Complex as Precursor
Corresponding Author(s) : Qi Ding
Asian Journal of Chemistry,
Vol. 25 No. 5 (2013): Vol 25 Issue 5
Abstract
Without using any surfactant or chemical assistant, we just use [Zn(phen)2(H2O)2]2L·6H2O complex as precursor to react with sulfourea as sulphur source under moderate conditions. Uniform ZnS sphere crystalline has been successfully synthesized via a convenient solvothermal method, in which ethanediol and ethanediamine were utilized as mixed solvent. The composition and morphology of as-prepared samples were, respectively characterized by X-ray diffraction and scanning electron microscope. Also the photoluminescence property of the as-synthesized ZnS materials was studied in this work.
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- R. Chen, D.H. Li, B. Liu, Z.P. Peng, G.G. Gurzadyan, Q.H. Xiong and H.D. Sun, Nano Lett., 10, 4956 (2010).
- J.S. Schrie, D.O. Demchenko and L.W. Wang, Nano Lett., 7, 2377 (2007).
- C. Meng, Y. Xiao, P. Wang, L. Zhang, Y.X. Liu and L.M. Tong, Adv. Mater., 23, 3770 (2011).
- E.M. Likovich, R. Jaramillo K.J. Russell, S. Ramanathan and V. Narayanamurti, Adv. Mater., 23, 4521 (2011).
- K. Kim, J.Y. Woo, S.H. Jeong and C.S. Han, Adv. Mater., 23, 911 (2011).
- G.Z. Shen, Y. Bando and D. Golberg, Appl. Phys. Lett., 88, 107 (2006).
- Y. Jiang, X.M. Meng, J. Liu, Z.R. Hong, C.S. Lee and S.T. Lee, Adv. Mater., 15, 1195 (2003).
- X.S. Fang, C.H. Ye, L.D. Zhang, Y.H. Wang and Y.C. Wu, Adv. Funct. Mater., 15, 63 (2005).
- Q.Z. Wu, H.Q. Cao, S.C. Zhang, X.R. Zhang and D. Rabinovich, Inorg. Chem., 45, 7316 (2006).
- L.W. Mi, M.L. Han, Z. Li, F.L. Yang, C.Y. Shen and Z. Zheng, Z. Anorg. Allg. Chem., 636, 1913 (2010).
- L.W. Mi, M.L. Han, D.P. Li, W.H. Chen and Z. Zheng, Z. Anorg. Allg. Chem., 634, 273 (2008).
- J. Yang, J.F. Ma, D.M. Wu, L.P. Guo and J.F. Liu, Transition Met. Chem., 28, 789 (2003)
References
R. Chen, D.H. Li, B. Liu, Z.P. Peng, G.G. Gurzadyan, Q.H. Xiong and H.D. Sun, Nano Lett., 10, 4956 (2010).
J.S. Schrie, D.O. Demchenko and L.W. Wang, Nano Lett., 7, 2377 (2007).
C. Meng, Y. Xiao, P. Wang, L. Zhang, Y.X. Liu and L.M. Tong, Adv. Mater., 23, 3770 (2011).
E.M. Likovich, R. Jaramillo K.J. Russell, S. Ramanathan and V. Narayanamurti, Adv. Mater., 23, 4521 (2011).
K. Kim, J.Y. Woo, S.H. Jeong and C.S. Han, Adv. Mater., 23, 911 (2011).
G.Z. Shen, Y. Bando and D. Golberg, Appl. Phys. Lett., 88, 107 (2006).
Y. Jiang, X.M. Meng, J. Liu, Z.R. Hong, C.S. Lee and S.T. Lee, Adv. Mater., 15, 1195 (2003).
X.S. Fang, C.H. Ye, L.D. Zhang, Y.H. Wang and Y.C. Wu, Adv. Funct. Mater., 15, 63 (2005).
Q.Z. Wu, H.Q. Cao, S.C. Zhang, X.R. Zhang and D. Rabinovich, Inorg. Chem., 45, 7316 (2006).
L.W. Mi, M.L. Han, Z. Li, F.L. Yang, C.Y. Shen and Z. Zheng, Z. Anorg. Allg. Chem., 636, 1913 (2010).
L.W. Mi, M.L. Han, D.P. Li, W.H. Chen and Z. Zheng, Z. Anorg. Allg. Chem., 634, 273 (2008).
J. Yang, J.F. Ma, D.M. Wu, L.P. Guo and J.F. Liu, Transition Met. Chem., 28, 789 (2003)