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[299] M.N. Kamalasanan, S. Chandra, P.C Joshi, A. Mansingh, Structural and optical prop-
erties of sol gel processed BaTiO 3 ferroelectric films, Appl. Phys. Letts. 59 (1991)
3547 3556.
[300] W.S. Cho, M. Yoshimura, Hydrothermal synthesis of Pb TiO 3 films, J. Mater. Res. 12
(1997) 833 839.
[301] V.S. Dharmadhikari, W.W. Grannemann, AES study on the chemical composition of
ferroelectric BaTiO 3 thin films rf-sputter deposited on silicon, J. Vac. Sci. Technol.
A1 (1983) 483 489.
[302] M. Hayashi, N. Ishizawa, S.E. Yoo, M. Yoshimura, Preparation of barium titanate
thin film on titanium deposited glass substrate by the hydrothermal electrochemical
method, J. Ceram. Soc. Jpn. 98 (1990) 930 934.
[303] N. Ishizawa, H. Banno, M. Hayashi, S.E. Yoo, M. Yoshimura, Preparation of BaTiO 3
and SrTiO 3 polycrystallization thin films on flexible polymer film substrate by the
hydrothermal method, Jpn. J. Appl. Phys. 29 (1990) 2467 2471.
[304] S.E. Yoo, M. Hayashi, N. Ishizawa, M. Yoshimura, Preparation of strontium titanate
thin film on titanium metal substrate by the hydrothermal electrochemical method, J.
Am. Ceram. Soc. 73 (1990) 2561 2567.
[305] S.E. Yoo, N. Ishizawa, M. Hayashi, M. Yoshimura, Review on preparation of films of
multifunctional complex oxide by the hydrothermal electrochemical method, Rep.
Res. Lab. Eng. Mater. 16 (1991) 39 44Tokyo Inst. Technol.
[306] R. Basca, P. Ravindranathan, J.P. Dougherty, Electrochemical, hydrothermal and
electrochemical hydrothermal synthesis of barium titanate thin films on titanium sub-
strates, J. Mater. Res. 7 (1992) 423 428.
[307] M. Yoshimura, Hydrothermal electrochemical technique: a new fabrication method of
thin films of perovskite-type oxides, in: Proceedings of the Ninety-Fifth Annual
Meeting of the American Ceramic Society, Cincinnati, OH, April 20, 1993.
[308] M.E. Pilleux, V.M. Fuenzalida, Hydrothermal BaTiO 3 films on silicon: morphological
and chemical characterization, J. Appl. Phys. 74 (1993) 4664 4670.
[309] A.V. Alvarez, V.M. Fuenzalida, Evidence of transition metal diffusion during hydro-
thermal ceramic film growth: Ba(Ti,Zr)O 3 on layered Ti Zr alloy, J. Mater. Res. 14
(1999) 4136
4139.
[310] I.S. Escobar, C.I. Silva, T. Vargas, V.M. Fuenzalida, Nucleation and inhibition con-
trol during the hydrothermal electrochemical growth of barium titanate films, J. Am.
Ceram. Soc. 83 (2000) 2673 2676.
[311] P. Bendale, S. Venigalla, J.R. Ambrose, E.D. Verink, J.H. Adair, Preparation of bar-
ium titanate films at 55 C by an electrochemical method, J. Am. Ceram. Soc. 76
(1993) 2619 2627.
[312] Y. Ohba, M. Miyauchi, E. Sakai, M. Daimon, Hydrothermal synthesis of lead zirco-
nate titanate thin films fabricated by a continuous-supply autoclave, Jpn. J. Appl.
Phys. 34 (1995) 5216 5219.
[313] Q. Chen, Y. Qian, Z. Chen, W. Wu, Z. Chen, G. Zhou, et al., Hydrothermal epitaxy
of highly oriented TiO 2
thin films on silicon, Appl. Phys. Lett. 66 (1995)
1608 1610.
[314] Q. Chen, Y. Qian, Z. Chen, G. Zhou, Y. Zhang, Hydrothermal preparation of highly
oriented polycrystallization ZnO thin films, Mater. Letts. 22 (1995) 93 95.
[315] T. Hoffman, M. Gultzow, C.M.S. Torres, T. Doll, V.M. Fuenzalida, Microstructures
in BaTiO 3 thin films by hydrothermal growth and lift-off technique, Mater. Sci.
Semicond. Process. 2 (1999) 335 340.
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