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Growth and analysis of the tetragonal (ST12) germanium nanowires

机译:正方(ST12)的发展和分析锗纳米线

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New semiconducting materials, such as state-of-the-art alloys, engineered composites and allotropes of well-established materials can demonstrate unique physical properties and generate wide possibilities for a vast range of applications. Here we demonstrate, for the first time, the fabrication of a metastable allotrope of Ge, tetragonal germanium (ST12-Ge), in nanowire form. Nanowires were grown in a solvothermal-like single-pot method using supercritical toluene as a solvent, at moderate temperatures (290–330 °C) and a pressure of ∼48 bar. One-dimensional (1D) nanostructures of ST12-Ge were achieved via a self-seeded vapour–liquid–solid (VLS)-like paradigm, with the aid of an in situ formed amorphous carbonaceous layer. The ST12 phase of Ge nanowires is governed by the formation of this carbonaceous structure on the surface of the nanowires and the creation of Ge–C bonds. The crystalline phase and structure of the ST12-Ge nanowires were confirmed by X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM) and Raman spectroscopy. The nanowires produced displayed a high aspect ratio, with a very narrow mean diameter of 9.0 ± 1.4 nm, and lengths beyond 4 μm. The ST12-Ge nanowire allotrope was found to have a profound effect on the intensity of the light emission and the directness of the bandgap, as confirmed by a temperature-dependent photoluminescence study.
机译:新型半导体材料,如最先进的合金、工程复合材料和同素异形体的完善的材料展示独特的物理性质和产生广泛的广泛的可能性应用程序。时间,亚稳同素异形体的制造通用电气,正方锗(ST12-Ge)纳米线的形式。solvothermal-like单罐方法使用超临界甲苯作为溶剂,在温和的温度(290 - 330°C)和压力∼48酒吧。ST12-Ge通过自我播种了vapour-liquid-solid (VLS)例如范式,援助的原位形成无定形碳质层。通过这种碳质结构的形成表面的纳米线和创造Ge-C债券。ST12-Ge结构纳米线被证实通过x射线衍射(XRD)、高分辨率透射电子显微镜(HRTEM)拉曼光谱。显示高纵横比,一个非常狭窄平均直径为9.0±1.4纳米,长度4μm。产生深远影响的强度吗光发射的直接带隙,作为与温度有关的确认光致发光研究。

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