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Forming contacts and grain boundaries between MgO nanoparticles

机译:在MgO纳米颗粒之间形成接触和晶界

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The present article is concerned with how nanoparticles join: it considers MgO nano-cubes as a model, well-defined system. The development of grain boundaries (GBs) between cube particles has been re-examined using MgO smoke. In addition to the face-to-face contact which leads to the well-known low-a twist GBs, interactions are also found which initially involve point-to-face contact, edge-to-face contact, or contacts along the cube edges. It is proposed here that the point contact lead to a line contact through the requirement to balance charges, and rotation about such a line of contact leads to formation of the interface, i.e., the grain boundary. The atoms along the edges have lower coordination than the atoms in the bulk, which may contribute to the edge-edge and edge-face boundary formation. The inherently small size of nanoparticles makes transmission electron microscopy (TEM) an invaluable technique for characterizing the contacts between them without modifying them in any way. The present study uses TEM to characterize the types of boundaries formed, discusses the boundary structures, and considers how the particle morphology may determine the formation of low-a GBs.
机译:本文关注纳米颗粒如何结合:它认为MgO纳米立方体是一个模型,定义明确的系统。立方颗粒之间的晶界(GBs)的形成已使用MgO烟进行了重新检查。除了导致众所周知的低a扭曲GB的面对面接触外,还发现了相互作用,这些相互作用最初涉及点对面接触,边对面接触或沿立方体边缘的接触。 。在此提出,点接触通过平衡电荷的要求而导致线接触,并且围绕这种接触线的旋转导致形成界面,即晶界。沿着边缘的原子的配位要低于本体中的原子,这可能有助于边缘-边缘和边缘-表面边界的形成。纳米粒子固有的小尺寸使透射电子显微镜(TEM)成为表征它们之间的接触而无需进行任何修改的无价技术。本研究使用TEM表征形成的边界类型,讨论边界结构,并考虑粒子形态如何确定低a GB的形成。

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