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首页> 外文期刊>Journal of nanoscience and nanotechnology >Proton Conducting Ceramic Powder Synthesis by a Low Temperature Method
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Proton Conducting Ceramic Powder Synthesis by a Low Temperature Method

机译:低温法合成质子传导陶瓷粉末

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Molten salt synthesis (MSS) is a simple method for the preparation of ceramic powders with specific morphology. The main role of the molten salts is to increase the reaction rate and lower the reaction temperature. It occurs because of much higher mobility of reactants in the liquid medium than in the solid state. In this work the molten salt synthesis was applied to produce ceramic powders of La0.995Ca0.005NbO4 and BaCe0.9-xZrxY0.1O3. Single-phase lanthanum niobate formed in all studied conditions of the synthesis, whereas in the case of barium cerate-zirconate MSS led to forming two crystalline phases: barium cerate and barium zirconate. The heating temperature and time as well as the salt content most strongly influenced the shape and size of particles. The influence of other parameters on the powder morphology was weaker. Despite differences in size and morphology, all groups of the La0.995Ca0.005NbO4 powder obtained with the MSS method pressed into pellets and sintered gave a dense ceramic material. On the other hand in the case of barium cerate-zirconate regardless of synthesis and sintering conditions the ceramics were porous.
机译:熔盐合成(MSS)是一种制备具有特定形态的陶瓷粉末的简单方法。熔融盐的主要作用是提高反应速率并降低反应温度。发生这种情况的原因是,反应物在液体介质中的迁移率比固态高得多。在这项工作中,熔融盐合成被用于生产La0.995Ca0.005NbO4和BaCe0.9-xZrxY0.1O3的陶瓷粉末。在所有研究的合成条件下均形成单相铌酸镧,而在铈酸锆-锆酸钡的情况下,MSS导致形成两个结晶相:铈酸钡和锆酸钡。加热温度和时间以及盐含量对颗粒的形状和尺寸影响最大。其他参数对粉末形貌的影响较弱。尽管在尺寸和形态上有所不同,但通过MSS方法获得的所有La0.995Ca0.005NbO4粉末组均被压制成颗粒并进行烧结,得到了致密的陶瓷材料。另一方面,在不考虑合成和烧结条件的情况下,铈酸锆锆钡的陶瓷是多孔的。

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