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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Production of monodisperse cerium oxide microspheres with diameters near 100 A mu m by internal-gelation sol-gel methods
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Production of monodisperse cerium oxide microspheres with diameters near 100 A mu m by internal-gelation sol-gel methods

机译:通过内凝胶溶胶 - 凝胶方法生产直径100 a mu m的单分散氧化铈微球的生产

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Internal-gelation sol-gel methods have used a variety of sphere-forming methods in the past to produce metal oxide microspheres, but typically with poor control over the size uniformity at diameters near 100 A mu m. This work describes efforts to make and measure internal-gelation, sol-gel microspheres with very uniform diameters in the 100-200-A mu m size range using a two-fluid nozzle. A custom apparatus was used to form aqueous droplets of sol-gel feed solutions in silicone oil and heat them to cause gelation of the spheres. Gelled spheres were washed, dried, and sintered prior to mounting them on glass slides for optical imaging and analysis. Microsphere diameters and shape factors were determined as a function of silicone oil flow rate in a two-fluid nozzle and the size of a needle dispensing the aqueous sol-gel solution. Nine batches of microspheres were analyzed and had diameters ranging from 65.5 +/- 2.4 A mu m for the smallest needle and the fastest silicone oil flow rate to 211 +/- 4.7 A mu m for the largest needle and the slowest silicone oil flow rate. Standard deviations for measured diameters were less than 8% for all samples and most of them were less than 4%. Microspheres had excellent circularity with measured shape factors of 0.9-1. However, processing of optical images was complicated by shadow effects in the photoresist layer on glass slides and by overlapping microspheres. Based on the calculated flow parameters, microspheres were produced in a simple dripping mode in the two-fluid nozzle. Using flow rates consistent with a simple dripping mode in a two-fluid nozzle configuration allows for very uniform oxide microspheres to be produced using the internal-gelation sol-gel method.
机译:内凝胶溶胶 - 凝胶方法使用过去各种球形成形方法来生产金属氧化物微球,但通常在100 a mu m附近的直径下的尺寸均匀性差。这项工作描述了使用双流体喷嘴在100-200-a mu m尺寸范围内具有非常均匀的直径的内凝胶,溶胶 - 凝胶微球的努力。定制装置用于在硅油中形成溶胶 - 凝胶进料溶液的含水液滴,并加热它们以引起球体的凝胶化。洗涤凝胶球,干燥,并在将它们安装在玻璃载玻片上之前洗涤,干燥和烧结,用于光学成像和分析。微球直径和形状因子被确定为双流体喷嘴中有机硅油流速的函数和针溶液水溶液水溶液的尺寸。分析了9批微球,直径为65.5 +/- 2.4 a mu m,对于最小针头,最快的硅油流量为211 +/- 4.7 a mu m,对于最大针头和最慢的硅油流量。对于所有样品的测定直径的标准偏差小于8%,其中大部分小于4%。微球具有出色的圆形度,测量的形状因子为0.9-1。然而,光学图像的处理在玻璃载玻片上的光致抗蚀剂层中的阴影效应和重叠的微球复杂化。基于计算的流动参数,在双流体喷嘴中以简单的滴水模式产生微球。在双流体喷嘴配置中使用与简单的滴水模式一致的流速允许使用内凝胶溶胶 - 凝胶法生产非常均匀的氧化物微球。

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