[1]
A. Herabut, A. Dafan, J. Am. Ceram. Soc Vol, 80 (1997), p.2954.
Google Scholar
[2]
M.S. Hagiyev, I.H. Ismaizade, A.K. Abiyev, Ferroelectrics Vol, 56 (1984), p.215.
Google Scholar
[3]
I.P. Pronin, P.P. Syrnikov, V.A. Isupov, V.M. Egorov, N. Zaitseva, Ferroelectrics Vol, 25 (1980), p.395.
DOI: 10.1080/00150198008207029
Google Scholar
[4]
P. Pookmaneea, S. Phanichphanta, R.B. Heimann, Ceram. Forum Int Vol, 78 (2001), p.27.
Google Scholar
[5]
X.G. Peng, L. Manna, W.D. Yang, J. Wickham, E. Scher, A.P. Alivisatos, Nature Vol, 404 (2000), p.59.
Google Scholar
[6]
E. Hosono, S. Fujihara, I. Honma, H.S. Zhou: Adv. Mater Vol, 17(2005), p. (2091).
Google Scholar
[7]
L. Zhang, D.R. Chen, X.L. Jiao: J. Phys. Chem. B Vol, 110(2006), p.2668.
Google Scholar
[8]
K.C. Chin, G.L. Chong, C. K. Poh, L.H. Van, C.H. Sow, J.Y. Lin: J. Phys. Chem. C Vol, 111 (2007), p.9136.
Google Scholar
[9]
C.W. Peng, T.Y. Ke, L. Brohan, M.R. Plouet, J.C. Huang, C.Y. Lee: Chem. Mater Vol, 20 (2008), p.2426.
Google Scholar
[10]
Y.G. Wang, L.L. Yang, Y.J. Wang, X.F. Wang, G.R. Han, Adv. Mater. Research Vol, 152 (2011), p.1222.
Google Scholar
[11]
J. Dua, L.Q. Xu, G.F. Zou, L.L. Chai, Y.T. Qian, Mater. Chem. Phys Vol, 103 (2007), p.441.
Google Scholar
[12]
Y.G. Sun, Y.N. Xia: Science Vol, 298 (2002), p.2176.
Google Scholar
[13]
L.F. Gou, C.J. Murphy: Nano Lett Vol, 3 (2003), p.231.
Google Scholar
[14]
J.B. Liu, H. Wang, Y.D. Hou, M.K. Zhu, H. Yan, M. Yoshimura, Nanotechnology Vol, 15 (2004), p.777.
Google Scholar
[15]
J.T. Zeng, K.W. Kwok, W.K. Tam, H.Y. Tian, X.P. Jiang, H.L.W. Chan, J. Am. Ceram. Soc Vol, 89 (2006), p.3850.
Google Scholar
[16]
Y.G. Wang, G. Xu, L.L. Yang, Z.H. Ren, X. Wei, W.J. Weng, P.Y. Du, G. Shen, G.R. Han, Ceram Inter Vol, 35 (2009), p.1657.
Google Scholar
[17]
E.W. Shi, C.T. Xia, W.Z. Zhong, B.G. Wang, C.D. Feng, J. Am. Ceram. Soc Vol, 80 (1997), p.1567.
Google Scholar
[18]
T. Yoshida, M. Tochimoto, D. Schlettwein, D. Wohrle, T. Sugiura, H. Minoura, Chem Mater Vol, 11 (1999), p.2657.
Google Scholar