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首页> 外文期刊>Journal of the European Ceramic Society >Synthesis and characterization of lead-free piezoelectric (K0.50Na0.50)NbO3 powder produced at lower calcination temperatures: A comparative study with a calcination temperature of 850 degrees C
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Synthesis and characterization of lead-free piezoelectric (K0.50Na0.50)NbO3 powder produced at lower calcination temperatures: A comparative study with a calcination temperature of 850 degrees C

机译:在较低煅烧温度下产生的无铅压电(K0.50NA0.50)NBO3粉末的合成与表征:煅烧温度为850℃的比较研究

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摘要

To prevent the evaporation of alkali elements during the calcination of the lead-free piezoelectric K0.50Na0.5NbO3 (KNN), lower temperatures for the solid-state synthesis of the KNN from a mixture of Na2CO3, K2CO3 and Nb2O5 were investigated with a variety of powder-characterization techniques. The collected data suggested 550 degrees C as a possible low calcination temperature, as well as being sufficiently high for a completed synthesis of the KNN. The XRD and TEM analyses of double-calcined KNN powder at 550 degrees C revealed nanocrystalline, cube-shaped particles with a perovskite structure, but without noticeable unreacted precursors or secondary phases. Our investigations revealed that the morphology of the calcined powders underwent a dramatic change from small, differently shaped particles at 600 degrees C/6 h, to fully rounded, large, spherical agglomerates produced at 1000 degrees C/6 h. To explain this behavior, a mechanism involving the formation of a liquid phase during the reaction of the alkali elements with the moisture and CO2 in the atmosphere is proposed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了防止在无铅压电K0.50na0.5NO.50.5NO.5N0.5NO.5N0.5NO.5N0.5NO.5N3(KNN)的煅烧过程中蒸发碱性元素,研究了从NA2CO3,K2CO3和NB2O5的混合物中寻找kNN的固态合成的较低温度粉末表征技术。收集的数据建议550℃,作为可能的低煅烧温度,以及完整的KNN的合成足够高。在550摄氏度下双煅烧KNN粉末的XRD和TEM分析显示纳米晶,立方形颗粒,具有钙钛矿结构,但没有明显的未反应的前体或二次相。我们的研究表明,煅烧粉末的形态经历了600℃/ 6小时的小,不同形状的颗粒的显着变化,以完全圆润,大,球形附聚物在1000℃/ 6h下产生。为了解释这种行为,提出了一种涉及在大气中与水分和CO 2反应形成液相期间的液相的机制。 (c)2016 Elsevier Ltd.保留所有权利。

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