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Crystalline silicon nanotubes and their connections with gold nanowires in both linear and branched topologies

机译:线性和分支拓扑结构的结晶硅纳米管及其与金纳米线的连接

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摘要

Silicon, being in the same group in the periodic table as carbon, plays a key role in modern semiconductor industry. However, unlike carbon nanotube (NT), progress remains relatively slow in silicon NT (SiNT) and SiNT-based heteroarchitectures, which would be the fundamental building blocks of various nanoscale circuits, devices, and systems. Here, we report the synthesis of linear and branched crystalline SiNTs via porous anodic aluminum oxide (AAO) self-catalyzed growth and postannealing, and the connection of crystalline SiNTs and gold nanowires (AuNWs) via a combinatorial process of electrodepositing AuNWs with predesired length and location in the channels of the AAO template and subsequent AAO self-catalyzed and postannealing growth of SiNTs in the remaining empty channels adjacent to the AuNWs. Using the approach, a large variety of two-segment AuNW/SiNT and three-segment SiNT/AuNW/SiNT heteronanostructures with both linear and branched topologies have been achieved, paving the way for the rational design and fabrication of SiNT-based nanocircuits, nanodevices, and multifunctional nanosystems in the future.
机译:硅与碳在元素周期表中处于同一组,在现代半导体工业中起着关键作用。但是,与碳纳米管(NT)不同的是,硅NT(SiNT)和基于SiNT的异质架构的进展仍然相对缓慢,而异质架构将成为各种纳米级电路,器件和系统的基本组成部分。在这里,我们报告通过多孔阳极氧化铝(AAO)自催化生长和后退火合成线型和支化晶体SiNTs,以及通过电沉积具有预定长度和长度的AuNWs的组合过程来连接晶体SiNTs和金纳米线(AuNWs)。定位在AAO模板的通道中,随后AAO在与AuNWs相邻的其余空通道中进行SiNTs的自催化和退火后生长。使用该方法,已经实现了具有线性和分支拓扑结构的各种各样的两段式AuNW / SiNT和三段式SiNT / AuNW / SiNT异质纳米结构,为基于SiNT的纳米电路,纳米器件的合理设计和制造铺平了道路。 ,以及将来的多功能纳米系统。

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