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首页> 外文期刊>ACS nano >Dynamics and Removal Pathway of Edge Dislocations in Imperfectly Attached PbTe Nanocrystal Pairs: Toward Design Rules for Oriented Attachment
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Dynamics and Removal Pathway of Edge Dislocations in Imperfectly Attached PbTe Nanocrystal Pairs: Toward Design Rules for Oriented Attachment

机译:不完全连接的PBTE纳米晶体对边缘位错的动态及去除途径:朝向设计规则

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Using in situ high-resolution TEM, we study the structure and dynamics of well-defined edge dislocations in imperfectly attached PbTe nanocrystals. We identify that attachment of PbTe nanocrystals on both {100} and {110} facets gives rise to b = a/2(110) edge dislocations. Based on the Burgers vector of individual dislocations, we can identify the glide plane of the dislocations. We observe that defects in particles attached on {100} facets have glide planes that quickly intersect the surface, and HRTEM movies show that the defects follow the glide plane to the surface. For {110} attached particles, the glide plane is collinear with the attachment direction, which does not provide an easy path for the dislocation to reach the surface. Indeed, HRTEM movies of dislocations for {110} attached particles show that defect removal is much slower. Further, we observe conversion from pure edge dislocations in imperfectly attached particles to dislocations with mixed edge and screw character, which has important implications for crystal growth. Finally, we observe that dislocations initially closer to the surface have a higher speed of removal, consistent with the strong dislocation free surface attractive force. Our results provide important design rules for defect-free attachment of preformed nanocrystals into epitaxial assemblies
机译:使用原位高分辨率TEM,我们研究在不完全连接的PBTE纳米晶体中明确的边缘位错的结构和动态。我们识别PBTE纳米晶体对{100}和{110}小平面上的附件产生B = A / 2(110)边缘位错。基于个体脱位的汉堡载体,我们可以识别脱位的滑动平面。我们观察到附着在{100}小平面上的粒子中的缺陷具有快速与表面交叉的滑坡,而HRTEM电影表明缺陷遵循滑动平面到表面。对于{110}附着的颗粒,滑动平面与附接方向相连,该连接方向不提供脱位到达表面的容易路径。实际上,{110}附加粒子的HRTEM电影表明缺陷去除速度较慢。此外,我们观察从不完全连接的颗粒中的纯边缘位错的转化与混合边缘和螺钉特征的位错,这对晶体生长具有重要意义。最后,我们观察到最初更接近表面的脱位具有更高的去除速度,与强脱位的自由表面有吸引力一致。我们的结果为预成型纳米晶体的无缺陷附件提供了重要的设计规则,进入外延组件

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