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The Effect of Ultrasonic Treatment on the Particle Size and Specific Surface Area of LaCoO3

机译:超声处理对Lacoo3的粒径和比表面积的影响

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It is well known that the properties of the materials depend on the synthesis process. The controlled synthesis concern particle size and specific surface area of LaCoO3 material is necessary in many applications, such as catalysis and gas sensitivity. Since the activity of a catalysis strongly depends on the particle size and specific surface area. In this study, LaCoO3 powder was synthesized by grinding, heating and washing operations. Firstly, mixture powder of starting materials, LaCl3, CoCl2 and Na2CO3 was ground by using a planetary ball mill grind at speed 300 rpm for 2 h. Secondly, the ground sample was calcined at 600°C for 90 minutes. Finally, the sample product was washed with distilled water under ultrasonic for different treatment times to remove the NaCl phase. The ultrasonic bath was sonicated at a frequency of 40 kHz with a total nominal output power of 95 W for 0, 2, 4 and 6 minutes. All prepared samples were characterized by XRD, particle size analyzer, BET and SEM analysis. XRD patterns clearly showed the complete formation of LaCoO3 with a single-phase of perovskite structure from this synthesis. Moreover, it was found that increasing of the sonication treatment time increases the specific surface area of the prepared samples while decreasing the average particle size D[4,3]. In addition, SEM micrographs also revealed that the morphology is significantly influenced by the sonication time of treatment.
机译:众所周知,材料的性质取决于合成过程。在许多应用中,如催化和气体敏感性,所控制的合成关注LACOO3材料的粒度和比表面积是必需的。由于催化的活性强烈取决于粒度和比表面积。在本研究中,通过研磨,加热和洗涤操作合成LaCoo3粉末。首先,通过在速度300rpm的速度300rpm下使用行星球磨机研磨2小时,将起始原料,LACL3,COCl2和Na 2 CO 3的混合物粉末研磨。其次,将研磨样品在600℃下煅烧90分钟。最后,在超声波下用蒸馏水洗涤样品,用于不同的处理时间以除去NaCl相。超声浴以40kHz的频率超声处理,总标称输出功率为95W,0,2,4和6分钟。所有制备的样品都是通过XRD,粒度分析仪,BET和SEM分析的特征。 XRD图案清楚地显示了LACOO3的完全形成,具有来自该合成的单相的钙钛矿结构。此外,发现超声处理时间的增加增加了制备样品的比表面积,同时降低了平均粒度D [4,3]。此外,SEM显微照片还显示,形态受到治疗超声处理时间的显着影响。

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