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Nanoscale modification of one-dimensional single-crystalline cuprous oxide

机译:一维单晶亚氧化铝酰胺的纳米级改性

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摘要

In this work we report for the first time a method to modify the surface of Cu_2O nanowires in a controllable way and physically weld them into a network form, which contributes to higher electrical conductivity as well as a strong water-repelling nature. We have used state-of-the-art theoretical calculations to support our experimental observations. We demonstrate how varying the irradiation fluence can modulate the surface and decorate the nanowire with a uniform distribution of Cu_8O nanocrystals due to preferential sputtering. While several well studied joining techniques are available for carbon and metal-based nanowires, the same information for ceramic nanowires is scarce at present. The current study sheds light into this and a state-of-theart 3D simulation technique predicts most of the modifications including surface modulation, oxygen depletion and welding. The welded network shows higher electrical conductivity than the unwelded assembly. With Cu_2O being of p-type the current ion beam joining technique shows a novel path for fabricating p-i-n junctions or solar cell devices through bottom-up approach. Furthermore, we have explored the response of this network to moisture. Our calculation based on density functional theory predicts the hydrophilic nature of individual copper oxide nanowires both before and after irradiation. However, the network shows a strong water-repelling nature, which has been explained quantitatively using the Cassie-Baxter model.
机译:在这项工作中,我们首次报告一种以可控方式修改Cu_2O纳米线表面的方法,并将它们物理地焊接到网络形式中,这有助于更高的电导率以及强大的水排放性质。我们使用了最先进的理论计算来支持我们的实验观察。我们证明了辐射注量可以调节表面的变化,并通过优先溅射由于Cu_8O纳米晶体的均匀分布而装饰纳米线。虽然有几种良好研究的连接技术可用于碳和金属基纳米线,但目前含有陶瓷纳米线的相同信息。目前的研究揭示了光线,并且最终的3D仿真技术预测了大部分修改,包括表面调制,氧气耗尽和焊接。焊接网络显示比未焊接的组件更高的电导率。对于p型的CU_2O,电流离子束连接技术示出了通过自下而上的方法制造P-I-N结或太阳能电池装置的新型路径。此外,我们已经探讨了该网络的响应到潮湿。我们基于密度函数理论的计算预测了在照射前后双氧化铜纳米线的亲水性质。然而,该网络显示出强大的水排斥性质,这已经使用Cassie-Baxter模型定量解释。

著录项

  • 来源
    《Nanotechnology》 |2019年第36期|共14页
  • 作者单位

    School of Basic Sciences Indian Institute of Technology Bhubaneswar Bhubaneswar 751007 India;

    School of Basic Sciences Indian Institute of Technology Bhubaneswar Bhubaneswar 751007 India;

    Department of Electronic Materials Engineering Research School of Physics and Engineering The Australian National University Canberra ACT 2601 Australia;

    Institute of Ion Beam Physics and Materials Research Helmholtz-Zentrum Dresden-Rossendorf 01328 Dresden Germany;

    Institute of Ion Beam Physics and Materials Research Helmholtz-Zentrum Dresden-Rossendorf 01328 Dresden Germany;

    School of Basic Sciences Indian Institute of Technology Bhubaneswar Bhubaneswar 751007 India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    copper oxide; superhydrophobic; ion irradiation; nanowire; welding;

    机译:氧化铜;超细杂志;离子照射;纳米线;焊接;

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