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Heterojunctions between metals and carbon nanotubes as ultimate nanocontacts

机译:金属和碳纳米管之间的异质结作为最终的纳米接触

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摘要

We report the controlled formation and characterization of heterojunctions between carbon nanotubes and different metal nanocrystals (Fe, Co, Ni, and FeCo). The heterojunctions are formed from metal-filled multiwall carbon nanotubes (MWNTs) via intense electron beam irradiation at temperatures in the range of 450-700 ℃ and observed in situ in a transmission electron microscope. Under irradiation, the segregation of metal and carbon atoms occurs, leading to the formation of heterojunctions between metal and graphite. Metallic conductivity of the metal-nanotube junctions was found by using in situ transport measurements in an electron microscope. Density functional calculations show that these structures are mechanically strong, the bonding at the interface is covalent, and the electronic states at and around the Fermi level are delocalized across the entire system. These properties are essential for the application of such heterojunctions as contacts in electronic devices and vital for the fabrication of robust nanotube-metal composite materials.
机译:我们报告了碳纳米管与不同金属纳米晶体(Fe,Co,Ni和FeCo)之间异质结的受控形成和表征。异质结是由金属填充的多壁碳纳米管(MWNT)在450-700℃的温度下通过强电子束辐照形成的,并在透射电子显微镜中进行现场观察。在辐射下,金属和碳原子发生偏析,导致金属和石墨之间形成异质结。通过在电子显微镜中使用原位传输测量,发现了金属-纳米管结的金属导电性。密度泛函计算表明,这些结构具有很强的机械强度,界面处的键是共价键,费米能级及其周围的电子态在整个系统中都离域。这些特性对于将此类异质结用作电子设备中的触点至关重要,并且对于制造坚固的纳米管-金属复合材料至关重要。

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  • 作者单位

    Institut de Physique et Chimie des Materiaux, Unite Mixte de Recherche 7504, Universite de Strasbourg, 23 Rue du Loess, 67034 Strasbourg, France;

    Institut de Physique et Chimie des Materiaux, Unite Mixte de Recherche 7504, Universite de Strasbourg, 23 Rue du Loess, 67034 Strasbourg, France;

    Laboratory for Nanoscience and Nanotechnology Research and Advanced Materials Department, Instituto Potosino de Investigacion Cientifica y Tecnologica, Camino a la Presa San Jose 2055, Col. Lomas 4a Seccion, 78216 San Luis Potosi, Mexico;

    Laboratory for Nanoscience and Nanotechnology Research and Advanced Materials Department, Instituto Potosino de Investigacion Cientifica y Tecnologica, Camino a la Presa San Jose 2055, Col. Lomas 4a Seccion, 78216 San Luis Potosi, Mexico;

    Department of Materials, University of Oxford, Parks Road, Oxford OX1 3PH, United Kingdom;

    Department of Mechanical Engineering and Materials Science, Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6367;

    Computer Science and Mathematics Division and Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6367;

    Computer Science and Mathematics Division and Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6367rn;

    World Premier International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan;

    World Premier International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan;

    World Premier International Center for Materials Nanoarchitectonics, National Institute for Materials Science, Namiki 1-1, Tsukuba, Ibaraki 305-0044, Japan;

    Laboratory for Nanoscience and Nanotechnology Research and Advanced Materials Department, Instituto Potosino de Investigacion Cientifica y Tecnologica, Camino a la Presa San Jose 2055, Col. Lomas 4a Seccion, 78216 San Luis Potosi, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nanoelectronics; interfacial interactions; conductivity; electron microscopy; composites;

    机译:纳米电子学界面相互作用;电导率电子显微镜;复合材料;
  • 入库时间 2022-08-18 00:41:53

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