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Single Crystalline Iron Silicide and Beta-Iron Disilicide Nanowires Formed through Chemical Vapor Deposition

机译:通过化学气相沉积形成单晶硅化铁和β-二硅化铁纳米线

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摘要

In this paper, we report the synthesis of iron silicide and β-iron disilicide nanowires with chemical vapor deposition; remarkably, the latter has drawn much attention but has seldom been achieved. We also propose the formation mechanisms for the two phases. To investigate the effects of the growth parameters on compositions and morphologies of the iron silicide nanowires, we changed and studied the reaction time, substrate temperature, position of samples, and pressure. The reaction concentration was found to be altered by all of the parameters; thus, we observed different nanowires in terms of morphologies and compositions with scanning electron microscopy. To confirm the growth direction and crystal structure of the nanowires, we conducted x-ray diffraction and high-resolution transmission electron microscopy studies. With the potential of being utilized as circuit elements in electronic devices for Schottky barriers, ohmic contacts, and interconnection among silicon-based transistors, the silicide work at nanoscale is beneficial for nanoelectronics. Understanding the effects of these growth parameters facilitates the control of nanowire growth with better quality.
机译:本文报道了化学气相沉积法合成硅化铁和β-二硅化铁纳米线的方法。值得注意的是,后者引起了很多关注,但很少实现。我们还提出了两个阶段的形成机制。为了研究生长参数对硅化铁纳米线的组成和形态的影响,我们更改并研究了反应时间,衬底温度,样品位置和压力​​。发现反应浓度受所有参数的影响。因此,我们用扫描电子显微镜观察到了不同的纳米线的形态和组成。为了确认纳米线的生长方向和晶体结构,我们进行了X射线衍射和高分辨率透射电子显微镜研究。由于被用作肖特基势垒,欧姆接触以及硅基晶体管之间互连的电子设备中的电路元件的潜力,纳米级硅化物的工作对纳米电子学是有益的。了解这些生长参数的效果有助于更好地控制纳米线的生长。

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