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Lab and Pilot-Scale Synthesis of MxOm@SiC Core–Shell Nanoparticles

机译:MxOm @ SiC核壳纳米粒子的实验室和中试合成

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摘要

The addition of light ceramic particles to bulk technological materials as reinforcement to improve their mechanical properties has attracted increasing interest in the last years. The metal matrix composites obtained using nanoparticles have been reported to exhibit an improvement of their properties due to the decrease in the size of the ceramic additives to the nanoscale. Additionally, important effects such as the dispersion of the nanoparticles, wettability, and low reactivity can be controlled by the modification of the nanoparticles’ surface. In this work, we present the preparation of core–shell M O @SiC nanoparticles with different shell compositions. The accurate and reproducible preparation is developed both at the lab and pilot scale. The synthesis of these core–shell nanoparticles and their scale-up production are fundamental steps for their industrial use as additives in metal matrix composites and alloys. Powder X-ray diffraction and energy dispersive X-ray (EDX) coupled with scanning transmission electron microscopy (STEM) are used to corroborate the formation of the core–shell systems, whereas line scan-EDX analysis allows measuring the average shell thickness.
机译:近年来,将轻质陶瓷颗粒添加到块状技术材料中作为增强其机械性能的增强材料已引起越来越多的关注。据报道,由于纳米颗粒中陶瓷添加剂的尺寸减小,使用纳米颗粒获得的金属基复合材料表现出其性能的改善。此外,可以通过修饰纳米粒子的表面来控制重要的影响,例如纳米粒子的分散,润湿性和低反应性。在这项工作中,我们介绍了具有不同壳组成的核-壳M O @SiC纳米颗粒的制备。在实验室和中试规模上都可以开发出准确且可重复的制备方法。这些核壳纳米粒子的合成及其大规模生产是将其工业用作金属基质复合材料和合金中添加剂的基本步骤。粉末X射线衍射和能量色散X射线(EDX)结合扫描透射电子显微镜(STEM)用于证实核-壳层系统的形成,而线扫描-EDX分析可以测量平均壳层厚度。

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