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Reactive intermediate phase cold sintering in strontium titanate.

Rebecca BostonJing GuoS FunahashiA L BakerIan M ReaneyClive A Randall
Published in: RSC advances (2018)
Dense (>96% theoretical) strontium titanate ceramics were fabricated at 950 °C (conventional sintering temperature > 1400 °C) using a reactive intermediate phase cold sintering process. An aqueous solution of SrCl 2 mixed with TiO 2 nanoparticles was added to SrTiO 3 powders and pressed at 180 °C to obtain a highly compacted green body. During the post-press heating step at 950 °C, the TiO 2 and SrCl 2 create in-filling micro-reactions around each grain resulting in dense (>96%) SrTiO 3 ceramics. Nano- and micron-sized starting powders were used, demonstrating that this reactive intermediate phase cold sintering route can densify a wide range of starting powder sizes, as it not reliant on an amorphous-to-crystalline precipitation through the terrace ledge kink mechanism, as has been identified repeatedly in previous cold sintering mechanisms. Moreover, this process has the potential to densify a wide variety of functional oxides, as a range of different low-temperature chemical synthesis routes could be used.
Keyphrases
  • aqueous solution
  • room temperature
  • quantum dots
  • risk assessment
  • human health