Growth and Characterization of $ACu_3Ti_4O_{12}$(A=Ca, Sr) Single Crystals

  • Yoo, Sang-Im (School of Materials Science and Engineering, Seoul National University) ;
  • Sangdon Yang (School of Materials Science and Engineering, Seoul National University) ;
  • Geomyung Shin (School of Materials Science and Engineering, Seoul National University) ;
  • Wee, Seong-Hun (School of Materials Science and Engineering, Seoul National University) ;
  • Park, Hyun-Min (New Materials Evaluation Center, Korea Research Institute of Standards and Science)
  • Published : 2003.05.01

Abstract

A cubic perovskite-type CaCu₃Ti₄O/sub 12/ compound has recently drawn a great attention because of an extraordinary high permittivity (~10⁴ at 1 kHz) at room temperature and its near temperature-independence over a wide temperature region, and thus numerous literature have been reported on CCTO polycrytalline ceramics and thin films. However, only a few literature have been reported on the CCTO single due to the lack of information about the CCTO primary phase field. On the basis of our recent experimental determination of the CCTO primary phase field, we could grow ACu₃Ti₄O/sub 12/(A=Ca, Sr) single crystals using both top-seeded solution growth and flux growth methods. This presentation will include three major parts. In part I, the thermal decomposition reaction of CCTO and its primary phase field in the CaO-CuO-TiO₂ ternary system will be presented. Detailed growth conditions of ACu₃Ti₄O/sub 12/(A=Ca, Sr) single crystals and characteristics of as-grown crystals will be followed in Part II. Part III will be comprised of dielectric properties of as-grown ACu₃Ti₄O/sub 12/(A=Ca, Sr) single crystals. Our experimental results will be compared with those of previous reports for discussion.

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