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首页> 外文期刊>Nanomaterials >Single Crystalline Higher Manganese Silicide Nanowire Arrays with Outstanding Physical Properties through Double Tube Chemical Vapor Deposition
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Single Crystalline Higher Manganese Silicide Nanowire Arrays with Outstanding Physical Properties through Double Tube Chemical Vapor Deposition

机译:单晶高级锰硅化物纳米线阵列,通过双管化学气相沉积具有出色的物理性质

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摘要

In this work, we report a novel and efficient silicidation method to synthesize higher manganese silicide (HMS) nanowires with interesting characterization and physical properties. High density silicon nanowire arrays fabricated by chemical etching reacted with MnCl 2 precursor through a unique double tube chemical vapor deposition (CVD) system, where we could enhance the vapor pressure of the precursor and provide stable Mn vapor with a sealing effect. It is crucial that the method enables the efficient formation of high quality higher manganese silicide nanowires without a change in morphology and aspect ratio during the process. X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were utilized to characterize the HMS nanowires. High-resolution TEM studies confirm that the HMS nanowires were single crystalline Mn 27 Si 47 nanowires of Nowotny Chimney Ladder crystal structures. Magnetic property measurements show that the Mn 27 Si 47 nanowire arrays were ferromagnetic at room temperature with a Curie temperature of over 300 K, highly depending on the relationship between the direction of the applied electric field and the axial direction of the standing nanowire arrays. Field emission measurements indicate that the 20 μm long nanowires possessed a field enhancement factor of 3307. The excellent physical properties of the HMS nanowires (NWs) make them attractive choices for applications in spintronic devices and field emitters.
机译:在这项工作中,我们报告了一种新颖的和有效的硅化方法,以合成具有有趣表征和物理性质的高级硅化锰(HMS)纳米线。通过独特的双管化学气相沉积(CVD)系统,通过化学蚀刻与MNCL 2前体反应的高密度硅纳米线阵列,其中我们可以增强前体的蒸气压,并提供稳定的Mn蒸汽,具有密封效果。至关重要的是,该方法能够在该过程中没有变化而无需改变形态和纵横比的高质量更高的锰硅化物纳米线。 X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)用于表征HMS纳米线。高分辨率的TEM研究证实HMS纳米线是NowoTny Chimney梯形结构的单晶Mn 27 Si 47纳米线。磁性测量表明,Mn 27 Si 47纳米线阵列在室温下是铁磁性,居里温度超过300k,高度取决于所施加的电场方向与常设纳米线阵列的轴向之间的关系。场发射测量表明,20μm长的纳米线具有3307的现场增强因子.HMS纳米线(NWS)的优异物理性质使它们为闪光装置和场发射器中的应用提供吸引人的选择。

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