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3D superconducting hollow nanowires with tailored diameters grown by focused He+ beam direct writing

机译:3D超导空心纳米线通过聚焦的直径来定制直径+梁直接写作

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摘要

Currently, the patterning of innovative three-dimensional (3D) nano-objects is required for the development of future advanced electronic components. Helium ion microscopy in combination with a precursor gas can be used for direct writing of three-dimensional nanostructures with a precise control of their geometry, and a significantly higher aspect ratio than other additive manufacturing technologies. We report here on the deposition of 3D hollow tungsten carbide nanowires with tailored diameters by tuning two key growth parameters, namely current and dose of the ion beam. Our results show the control of geometry in 3D hollow nanowires, with outer and inner diameters ranging from 36 to 142 nm and from 5 to 28 nm, respectively; and lengths from 0.5 to 8.9 µm. Transmission electron microscopy experiments indicate that the nanowires have a microstructure of large grains with a crystalline structure compatible with the face-centered cubic WC1−x phase. In addition, 3D electron tomographic reconstructions show that the hollow center of the nanowires is present along the whole nanowire length. Moreover, these nanowires become superconducting at 6.8 K and show high values of critical magnetic field and critical current density. Consequently, these 3D nano-objects could be implemented as components in the next generation of electronics, such as nano-antennas and sensors, based on 3D superconducting architectures.
机译:目前,开发未来先进电子元件的创新三维(3D)纳米物体的图案化。氦离子显微镜与前体气体组合可用于直接写入三维纳米结构,精确控制其几何形状,比其它添加剂制造技术明显高的纵横比。我们通过调整两个关键生长参数,即离子束的电流和剂量来报告3D空心碳化钨纳米线的沉积3D空心碳化钨纳米线。我们的结果显示了3D中空纳米线中的几何形状,外径和内径分别为36至142nm和5至28nm;长度为0.5至8.9μm。透射电子显微镜实验表明纳米线具有大颗粒的微观结构,其具有与面为中心的立方WC1-X相兼容的晶体结构。另外,3D电子断层重建表明纳米线的中空中心沿整个纳米线长度存在。此外,这些纳米线在6.8k处变得超导,并显示临界磁场的高值和临界电流密度。因此,基于3D超导架构,这些3D纳米物体可以在下一代电子设备中实现为下一代电子设备,例如纳米天线和传感器。

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