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Understanding the formation of multiply twinned structure in decahedral intermetallic nanoparticles

机译:了解十面体金属间纳米颗粒中多重孪晶结构的形成

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摘要

The structure of monometallic decahedral multiply twinned nanoparticles (MTPs) has been extensively studied, whereas less is known about intermetallic MTPs, especially the mechanism of formation of multiply twinned structures, which remains to be understood. Here, by using aberration-corrected scanning transmission electron microscopy, a detailed structural study of AuCu decahedral intermetallic MTPs is presented. Surface segregation has been revealed on the atomic level and the multiply twinned structure was studied systematically. Significantly different from Au and Cu, the intermetallic AuCu MTP adopts a solid-angle deficiency of −13.35°, which represents an overlap instead of a gap (+7.35° gap for Au and Cu). By analysing and summarizing the differences and similarities among AuCu and other existing monometallic/intermetallic MTPs, the formation mechanism has been investigated from both energetic and geometric perspectives. Finally, a general framework for decahedral MTPs has been proposed and unknown MTPs could be predicted on this basis.
机译:单金属十面体多重孪晶纳米粒子(MTP)的结构已被广泛研究,而金属间MTP的知之甚少,特别是多重孪晶结构的形成机理尚待了解。在这里,通过使用像差校正的扫描透射电子显微镜,对AuCu十面体金属间化合物MTP进行了详细的结构研究。已经在原子水平上揭示了表面偏析并且系统地研究了多孪晶结构。与Au和Cu明显不同,金属间AuCu MTP具有-13.35°的立体角缺陷,这表示重叠而不是间隙(Au和Cu为+ 7.35°间隙)。通过分析和总结AuCu与其他现有单金属/金属间MTP之间的异同,从能量和几何角度研究了形成机理。最后,提出了十面体MTP的通用框架,并且可以在此基础上预测未知的MTP。

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