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Influence of the (111) twinning on the formation of diamond cubic/diamond hexagonal heterostructures in Cu-catalyzed Si nanowires

机译:(111)孪晶对Cu催化Si纳米线中金刚石立方/金刚石六方异质结构形成的影响

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摘要

The occurrence of heterostructures of cubic silicon/hexagonal silicon as disks defined along the nanowire <111> growth direction is reviewed in detail for Si nanowires obtained using Cu as catalyst. Detailed measurements on the structural properties of both semiconductor phases and their interface are presented. We observe that during growth, lamellar twinning on the cubic phase along the <111> direction is generated. Consecutive presence of twins along the <111> growth direction was found to be correlated with the origin of the local formation of the hexagonal Si segments along the nanowires, which define quantum wells of hexagonal Si diamond. Finally, we evaluate and comment on the consequences of the twins and wurtzite in the final electronic properties of the wires with the help of the predicted energy band diagram.
机译:对于使用Cu作为催化剂获得的Si纳米线,详细回顾了沿着纳米线<111>生长方向限定的作为盘的立方硅/六方硅的异质结构的发生。给出了对半导体相及其界面的结构特性的详细测量。我们观察到在生长过程中,沿<111>方向在立方相上产生了层状孪晶。发现沿着<111>生长方向的孪晶的连续存在与沿着纳米线的六角形Si片段的局部形成的起源相关,所述纳米线限定了六角形Si金刚石的量子阱。最后,借助预测的能带图,我们评估并评论了孪晶和纤锌矿对电线最终电子性能的影响。

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