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Particle Size Distribution of ZrO_2:Pr~(3+) - Influences of pH, High Power Ultrasound, Surfactant and Dopant Quantity

机译:ZrO_2的粒度分布:PR〜(3+) - pH值,高功率超声,表面活性剂和掺杂剂量的影响

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The aim of the work was to examine the influence of pH, high power ultrasound, surfactant and dopant quantity on the particle size distribution of ZrO_2:Pr~(3+), with praseodymium content varying between 0.05 and 10 %. The nanopowders were obtained via a hydrothermal microwave driven process. To establish if the dopant was located on the surface of the zirconia nanoparticles, the particle size distribution, as a function of pH, was measured to obtain an estimate of the isoelectric point of the samples. All results indicated that the dopant was concentrated on the surface: the measurements of the particle size distribution show that the pH corresponding to maximum average particle size changes towards higher values when the Pr content increases. Measurements of the particle size distribution dependency on the application of high power ultrasound and the addition of the sodium dodecyl sulphate surfactant show that, under certain conditions, there is a better stabilisation of the nanopowders in a dispersion and undesirable agglomeration is hindered.
机译:该工作的目的是检查pH,高功率超声,表面活性剂和掺杂剂量对ZrO_2:Pr〜(3+)的粒度分布的影响,镨含量不同0.05-10%。通过水热微波驱动方法获得纳米粉末。建立如果掺杂剂位于所述氧化锆纳米粒子,粒径分布的表面上,作为pH的函数,测量得到样品的等电点的估计。所有结果表明,掺杂剂浓缩在表面上:粒度分布的测量结果表明,当PR含量增加时,对应于最大平均粒度的pH对应于最大平均粒度的变化。对高功率超声施加的粒度分布依赖性的测量值和十二烷基硫酸钠表面活性剂的添加表明,在某些条件下,在分散体中更好地稳定纳米粉末,并且阻碍了不希望的附聚。

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