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Preparation of Nanocrystalline Ba_3(Ca_(1.18)Nb_(1.82))O_(9-δ) Powder with Sol-gel Auto-ignition Synthesis Process

机译:溶胶-凝胶自燃合成纳米Ba_3(Ca_(1.18)Nb_(1.82))O_(9-δ)粉体

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摘要

Ba_3(Ca_(1.18)Nb_(1.82))O_(9-δ)(BCN18) powder was synthesized using a wet chemical method from mixtures of all water-soluble compounds including Ba, Ca and Nb-citrate. It has been found that NH_4NO_3 in the initial solutions plays an important role in controlling the enthalpy of low temperature combustion process as well as the gel decomposition temperature. Further steps include evaporating, drying and calcinating. The obtained gels were characterized by TG-DSC, and the powder was characterized with XRD, TEM and BET. The experimental results have indicated that the heating temperature was only 800℃ for synthesizing the powder and the average particle size was only about 40-50 nm. Furthermore it was found that a pure BCN18 phase with complex perovskite structure was formed at 800℃, which was about 800℃ lower than that of the traditional solid-reaction method. So it is more practical and more superior to the traditional solid-reaction method and the present wet-chemical method in alcohol salt system reported in literature.
机译:使用湿化学方法从包括Ba,Ca和柠檬酸Nb的所有水溶性化合物的混合物中使用湿化学方法合成了Ba_3(Ca_(1.18)Nb_(1.82))O_(9-δ)(BCN18)粉末。已经发现,初始溶液中的NH_4NO_3在控制低温燃烧过程的焓以及凝胶分解温度中起重要作用。进一步的步骤包括蒸发,干燥和煅烧。所得凝胶通过TG-DSC表征,粉末通过XRD,TEM和BET表征。实验结果表明,合成粉体的加热温度仅为800℃,平均粒径仅为40-50nm左右。进一步发现,在800℃时形成了具有复杂钙钛矿结构的纯BCN18相,比传统的固相反应法低约800℃。因此,在文献报道的醇盐体系中它比传统的固相反应法和目前的湿化学法更实用,更优越。

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