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Oxalate-precursor processing for high quality BaZrO3

机译:草酸盐前驱体处理高质量BaZrO3

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摘要

BaZrO3 is by far the most inert crucible material that has been used for melt processing of high quality single crystal YBCO superconductors. To overcome the processing difficulties of existing solid-state methods, solution processing methods are increasingly important in powder synthesis. This study investigates several methods of producing oxalate precursors for subsequent thermal decomposition to BaZrO3 with a view to producing high quality BaZrO3 ceramics. The most favourable system used barium acetate, ammonium oxalate and zirconium oxychloride, which unlike other previously reported oxalate processes allowed near stoichiometric precipitation without requiring a large excess of Ba reagents, elevated precipitation temperatures or slow addition of reagents. Precise control over precipitate stoichiometry was achieved by variation of the solution Ba:[Zr+Hf] mole ratio without requiring accurate control over oxalate addition. XRF, XRD, N2 BET adsorption, DTA/TGA and TEM analysis showed this process to be capable of producing BaZrO3 powders suitable for ceramics applications. The phase purity, particle size and surface areas of BaZrO3 powders produced by calcination of these precursors can be adjusted by variation of stoichiometry and calcination temperature. Crucibles formed from oxalate precursors have been able to contain Y2O3-BaCuO2-CuO melts for up to seven days.
机译:迄今为止,BaZrO3 是最惰性的坩埚材料,已用于高质量单晶YBCO超导体的熔融加工。为了克服现有固态方法的加工困难,溶液处理方法在粉末合成中越来越重要。本文研究了几种制备草酸盐前驱体并随后热分解为BaZrO3 的方法,以生产高质量的BaZrO3 陶瓷。最有利的系统是使用乙酸钡,草酸铵和氯氧化锆,与先前报道的其他草酸盐工艺不同,该系统允许接近化学计量的沉淀,而无需大量过量的Ba试剂,升高的沉淀温度或缓慢添加试剂。通过改变溶液Ba:[Zr + Hf]的摩尔比可以实现对沉淀化学计量的精确控制,而无需精确控制草酸盐的添加。 XRF,XRD,N2 BET吸附,DTA / TGA和TEM分析表明该工艺能够生产适用于陶瓷应用的BaZrO3 粉末。可以通过改变化学计量和煅烧温度来调节这些前体煅烧产生的BaZrO3 粉末的相纯度,粒度和表面积。由草酸盐前体形成的坩埚能够溶解Y2 O3 -BaCuO2 -CuO长达7天。

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  • 来源
    《Journal of Materials Science》 |2005年第1期|97-106|共10页
  • 作者单位

    Departments of Applied Physics Curtin University of Technology;

    Departments of Applied Physics Curtin University of Technology;

    Departments of Applied Physics Curtin University of Technology;

    Departments of Electrical and Computer Engineering Curtin University of Technology;

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