Synthesis of highly tetragonal BaTiO3 nanopowders by a two-step alkoxide–hydroxide route

2011 
Abstract BaTiO 3 (BT) nanopowders were synthesized using the alkoxide–hydroxide route. Formation of BT nanopowders commenced at 60 °C and their amount increased with increasing temperature. However, a TiO 2 second phase was always developed at temperatures higher than 100 °C due to the insufficient amount of H 2 O caused by its evaporation. Therefore, a two-step process is presented herein for the synthesis of homogeneous, highly tetragonal BT nanopowders. The cubic BT nanopowders were synthesized at 100 °C and subsequently heated to high temperatures (>200 °C) to increase their tetragonality. Homogeneous BT nanopowders with an average size of 94.8 nm and a high c / a ratio of 1.0081 were obtained for the specimens synthesized at 260 °C for 60 h after the formation of the cubic BT nanopowders at 100 °C for 20 h.
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