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γ-Iron Phase Stabilized at Room Temperature by Thermally Processed Graphene Oxide

机译:热处理氧化石墨烯可在室温下稳定γ-铁相

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摘要

Stabilizing nanoparticles on surfaces, such as graphene, is a growing field of research. Thereby, iron particle stabilization on carbon materials is attractive and finds applications in charge-storage devices, catalysis, and others. In this work, we describe the discovery of iron nanoparticles with the face-centered cubic structure that was postulated not to exist at ambient conditions. In bulk, the γ-iron phase is formed only above 917 °C, and transforms back to the thermodynamically favored α-phase upon cooling. Here, with X-ray diffraction and Mössbauer spectroscopy we unambiguously demonstrate the unexpected room-temperature stability of the γ-phase of iron in the form of the austenitic nanoparticles with low carbon content from 0.60% through 0.93%. The nanoparticles have controllable diameter range from 30 nm through 200 nm. They are stabilized by a layer of Fe/C solid solution on the surface, serving as the buffer controlling carbon content in the core, and by a few-layer graphene as an outermost shell.
机译:在表面上稳定纳米颗粒(例如石墨烯)是一个正在发展的研究领域。因此,碳材料上的铁颗粒稳定化具有吸引力,并在电荷存储设备,催化等领域得到了应用。在这项工作中,我们描述了具有面心立方结构的铁纳米颗粒的发现,该结构假定在环境条件下不存在。总体上,仅在高于917°C的温度下形成γ-铁相,冷却后转变回热力学上有利的α相。在这里,通过X射线衍射和Mössbauer光谱,我们明确地证明了低碳含量为0.60%至0.93%的奥氏体纳米颗粒形式的铁的γ相的出乎意料的室温稳定性。纳米颗粒具有可控制的直径范围,从30nm到200nm。它们通过表面上的一层Fe / C固溶体(用作控制芯中碳含量的缓冲剂)和一层最外层的石墨烯来稳定。

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  • 来源
    《Journal of the American Chemical Society》 |2018年第29期|9051-9055|共5页
  • 作者单位

    Laboratory for Advanced Carbon Nanomaterials, Kazan Federal University;

    Laboratory for Advanced Carbon Nanomaterials, Kazan Federal University,Institute of Physics, Kazan Federal University;

    Laboratory for Advanced Carbon Nanomaterials, Kazan Federal University;

    Laboratory for Advanced Carbon Nanomaterials, Kazan Federal University,Institute of Physics, Kazan Federal University;

    Materialwissenschaftliche Elektronenmikroskopie, Universität Ulm, Albert-Einstein-Allee 11;

    Materialwissenschaftliche Elektronenmikroskopie, Universität Ulm, Albert-Einstein-Allee 11;

    Institute of Chemistry and Biochemistry, Freie Universität Berlin, Takustraße 3;

    Institute of Physics, Kazan Federal University;

    Laboratory for Advanced Carbon Nanomaterials, Kazan Federal University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);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
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