DOI QR코드

DOI QR Code

Structural Properties of PZT(80/20) Thick Films Fabricated by Screen Printing Method

  • Lee, Sung-Gap (Department of Ceramic Engineering, Gyeongsang National University) ;
  • Lee, Young-Hie (Department of Electric and Electronic Engineering, Kwangwoon University)
  • 발행 : 2005.04.01

초록

Pb(Zr$_{0.8}$Ti$_{0.2}$)O$_{3}$ powders, prepared by the sol-gel method, were mixed with an organic vehicle and the PZT thick films were fabricated by the screen-printing techniques on Pt/Ah03 substrates. The structural properties were examined as a function of sintering temperature. The particle size distribution of the PZT powder derived from the sol-gel process is uniform with the mean particle size of about 2.6 m. As a result of the DTA, the formation of the polycrystalline perovskite phase was observed at around $890^{circ}$CC. In the X-ray diffraction analysis, all PZT thick films showed a perovskite polycrystalline structure without a pyrochlore phase. The perovskite crystallization temperature of PZT thick films was about $890^{circ}$C. The average thickness of the PZT thick films was approximately 80-90 m.

키워드

참고문헌

  1. D. Y. Jeong, S. Zhang, and H. B. Hwang, 'Dependence of domain stability on the thickness of the $0.88Pb(Zn_{1/3}Nb_{2/3})O_3-0.12PbTiO_3$ single crystal', J. Korean Phys. Soc., Vol. 44, No.6, p. 1531, 2004
  2. J. W. Hyun, 'Electrical properties of lead magnesium tantalate-lead zirconate perovskite ferroelectrics', J. Korean Phys. Soc., Vol. 44, No.2, p. 381, 2004
  3. Y. J. Go, H. C. Kim, H. D. Nam, H. G. Chang, and H. Woo, 'Design of the piezoelectric sounder using the PMM-PT-PZ', J. of KIEEME(in Korean), Vol. 14, No.1, p. 12, 2001
  4. K. J. Lim, J. Y. Park, J. S. Lee, S. H. Kang, and H. H. Kim, 'PZT-PMN ceramics for large displacement piezoelectric devices', Trans. EEM, Vol. 5, No.2, p. 76,2004
  5. B. H. Kim, J. H. An, K. S. Hwang, B. A. Kang, K. Nishio, and T. Tsuchiya, 'AFM analysis of chemicalsolution- derived epitaxial PZT films prepared by using oxidizing or non-oxidizing yrolysis', J. Korean Phys. Soc., Vol. 44, No.2, p. 346, 2004
  6. V. Walter, P. Delobelle, P. L. Moal, E. Joseph, and M. Collet, 'A piezo-mechanical characterization of PZT thick films screen-printed on alumina substrate', Sensors and Actuators A, Vol. 96, p. 157, 2002
  7. R. Thomas, S. Mochizuki, T. Mihara, and T. Ishida, 'Influence of sputtering and annealing conditions on the structure and ferroelectric properties of $Pb(Zr,Ti)O_3$ thin films prepared by RF magnetron sputtering', Jpn. J. Appl. Phys., Vol. 40, No. 9B, p. 5511, 2001
  8. T. K. MandaI and S. Ram, 'Synthesis of $PbZr_{0.7}TiO_{0.3}O_3$ nanoparticles in a new tetragonal crystal structure with a polymer precusor', Materials Letters, Vol. 57, p. 2432, 2003

피인용 문헌

  1. Preparation and electrical properties of sol infiltrated Pb(Zr0.7Ti0.3)O3 ferroelectric thick films vol.454, pp.1-2, 2008, https://doi.org/10.1016/j.jallcom.2006.12.115
  2. Effects of sol infiltration on the screen-printed lead zirconate titanate thick films vol.61, pp.10, 2007, https://doi.org/10.1016/j.matlet.2006.07.171
  3. Densification and electrical properties of solution coated lead zirconate titanate thick films vol.516, pp.16, 2008, https://doi.org/10.1016/j.tsf.2007.07.038
  4. DENSIFICATION AND FERROELECTRIC PROPERTIES OF PZT(60/40) THICK FILMS FABRICATED BY SCREEN-PRINTING METHOD vol.15, pp.01n02, 2008, https://doi.org/10.1142/S0218625X08010920