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Solid-solid and gas-solid interactions induced during high-energy milling to produce PbTe nanopowders

机译:高能研磨过程中产生PbTe纳米粉的固-固和气-固相互作用

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摘要

Transformations from precursors to nanoparticles by high-energy milling are promoted by two major driving forces, namely physical and/or chemical. While the former has been difficult to trace since stress, strain and recovery may occur almost simultaneously during milling, the latter has been sequentially followed as an evolution from precursors to intermediate phases and thereof to high purity nanocrystals. The specific objective of this work is to discern how solid-solid and partially solid-gas reactions manifest themselves correspondingly as a short-range diffusion through an interface or how vapor species, as a subliming phenomenon, grows as a different phase on an active local surface. These series of changes were traced by sub-cooling the as-milled powders extracted during a milling cycle. Through this experimental technique, samples were electron microscopically analyzed and where it was required, selected area electron diffraction images were obtained. High-resolution transmission electron microscopy results, unambiguously, confirm that nanocrystals in the last stage show a cubic morphology which average size distributions are around 17 nm.
机译:通过两个主要驱动力,即物理和/或化学,促进了通过高能研磨从前体到纳米颗粒的转变。尽管由于在研磨过程中应力,应变和恢复可能几乎同时发生,所以前者很难追踪,但后者却相继跟随着从前体到中间相及其向高纯度纳米晶体的演变。这项工作的具体目标是辨别固-固和部分固-气反应如何相应地表现为通过界面的短程扩散,或作为升华现象的蒸气物质如何在活性局部上以不同的相态生长。表面。通过对在研磨周期中提取的研磨粉进行过冷来追踪这些变化。通过这种实验技术,对样品进行了电子显微镜分析,并在需要时获得了选定区域的电子衍射图像。高分辨率透射电子显微镜的结果明确地证实,最后阶段的纳米晶体呈立方形态,其平均尺寸分​​布约为17 nm。

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