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首页> 外文期刊>Nano letters >Air-Stable Anisotropic Monocrystalline Nickel Nanowires Characterized Using Electron Holography
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Air-Stable Anisotropic Monocrystalline Nickel Nanowires Characterized Using Electron Holography

机译:空气稳定的各向异性单晶镍纳米线,其特征在于使用电子全息术

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摘要

Nickel is capable of discharging electric and magnetic shocks in aerospace materials thanks to its conductivity and magnetism. Nickel nanowires are especially desirable for such an application as electronic percolation can be achieved without significantly increasing the weight of the composite material. In this work, single-crystal nickel nanowires possessing a homogeneous magnetic field are produced via a metal–organic precursor decomposition synthesis in solution. The nickel wires are 20 nm in width and 1–2 μm in length. The high anisotropy is attained through a combination of preferential crystal growth in the ?100? direction and surfactant templating using hexadecylamine and stearic acid. The organic template ligands protect the nickel from oxidation, even after months of exposure to ambient conditions. These materials were studied using electron holography to characterize their magnetic properties. These thin nanowires display homogeneous ferromagnetism with a magnetic saturation (517 ± 80 emu cm~(–3)), which is nearly equivalent to that of bulk nickel (557 emu cm~(–3)). Nickel nanowires were incorporated into carbon composite test pieces and were shown to dramatically improve the electric discharge properties of the composite material.
机译:由于其电导率和磁性,镍能够在航空航天材料中排出电动和磁性冲击。对于这种应用特别希望镍纳米线,因为可以实现电子渗透而不会显着增加复合材料的重量。在这项工作中,通过溶液中的金属 - 有机前体分解合成具有均匀磁场的单晶镍纳米线。镍线的宽度为20nm,长度为1-2μm。通过α00的优先晶体生长的组合实现高各向异性?使用十六烷胺和硬脂酸的方向和表面活性剂模板。有机模板配体,即使经过几个月的环境条件,也可以保护镍免受氧化。使用电子全全息进行研究这些材料以表征其磁性。这些薄的纳米线显示磁饱和度(517±80埃姆厘米〜(-3)),几乎相当于散装镍(557 emucm〜(-3))。镍纳米线掺入碳复合试验片中,并显示出显着改善复合材料的放电性能。

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  • 来源
    《Nano letters》 |2018年第3期|共6页
  • 作者单位

    Laboratoire de Chimie de Coordination CNRS UPR 8241 205 route de Narbonne 31077 Toulouse France;

    Centre d’élaboration de Matériaux et d’études Structurales 29 rue Jeanne Marvig BP 94347 31055 Toulouse France;

    Laboratoire de Physique et Chimie des Nano-objets Institut National des Sciences Appliquées 135 Av de Rangueil 31077 Toulouse France;

    Laboratorio de Microscopias Avanzadas (LMA) Instituto de Nanociencia de Aragon (INA) Universidad de Zaragoza 50018 Zaragoza Spain;

    Healthcare Biomagnetic and Nanomaterials Laboratories The Royal Institution of Great Britain University College London 21 Albemarle Street London W1S 4BS United Kingdom;

    Laboratoire Plasma et Conversion d’énergie UMR 5213 Université de Toulouse CNRS 31062 Toulouse France;

    Laboratoire de Chimie de Coordination CNRS UPR 8241 205 route de Narbonne 31077 Toulouse France;

    Laboratoire de Chimie de Coordination CNRS UPR 8241 205 route de Narbonne 31077 Toulouse France;

    Laboratoire de Chimie de Coordination CNRS UPR 8241 205 route de Narbonne 31077 Toulouse France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;物理化学(理论化学)、化学物理学;
  • 关键词

    electric discharge; Electron holography; ligand stabilization; magnetism; nanowires; nickel;

    机译:放电;电子全全息术;配体稳定;磁性;纳米线;镍;

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