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Sintering Behaviors of Au Nanopowders with Different Particle Sizes: A Real-Time Synchrotron X-ray Scattering Study

机译:不同粒径的AU纳米粉末的烧结行为:实时同步X射线散射研究

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摘要

We have studied the solid-phase sintering behaviors of Au nanopowders with different particle sizes using real-time synchrotron X-ray scattering and field-emission scanning electron microscopy (FE-SEM) experiments in air. Au powders with large particle size of 173 nm at room temperature showed a defect-free crystal domain size of 47 nm. Most of these powders showed multiple grains within the particle. Solid-phase sintering typically occurred via surface diffusion of Au atoms near the surface of powders at temperatures above 300 degrees C, Au nanopowders with small particle size of 50 nm at room temperature showed a crystal domain size of 43 nm. Most of these powders showed a single grain inside the particle. Solid-phase sintering occurred simultaneously with volume diffusion of Au atoms near the grain boundary inside powders at temperatures above 250 degrees C and surface diffusion near the surface of powders at temperatures above 300 degrees C. Our study revealed that the solid-phase sintering behaviors of Au nanopowders began at temperatures over 250 degrees C, which is much lower than the melting temperature of 1064 degrees C. The thermal analysis results were consistent with the results of real-time synchrotron X-ray scattering and FE-SEM.
机译:我们研究了使用实时同步X射线散射和空气中的现场减排扫描电子显微镜(Fe-SEM)实验用不同粒度的Au Nanopowders的固相烧结行为。室温粒径为173nm的Au粉末显示出缺陷的晶体畴尺寸为47nm。这些粉末中的大多数显示颗粒内的多个颗粒。固相烧结通常通过Au原子的表面扩散发生在粉末表面的温度高于300℃的温度下,室温小粒径为50nm的Au纳米粉末显示晶体畴尺寸为43nm。这些粉末中的大多数显示颗粒内的单个晶粒。在高于250℃的温度的温度下粉末晶界附近的Au原子的体积扩散同时发生固相烧结,在300摄氏度高于300℃的粉末表面附近的表面扩散。我们的研究表明,固相烧结行为揭示了Au Nanopowders在超过250℃的温度下开始,远低于1064摄氏度的熔化温度。热分析结果与实时同步X射线散射和Fe-SEM的结果一致。

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