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Wet-Chemical Assembly of 2D Nanomaterials into Lightweight, Microtube-Shaped, and Macroscopic 3D Networks

机译:2D纳米材料的湿化学组装成轻型,微管状和宏观3D网络

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摘要

Despite tremendous efforts toward fabrication of three-dimensional macrostructures of two-dimensional (2D) materials, the existing approaches still lack sufficient control over microscopic (morphology, porosity, pore size) and macroscopic (shape, size) properties of the resulting structures. In this work, a facile fabrication method for the wet-chemical assembly of carbon 2D nanomaterials into macroscopic networks of interconnected, hollow microtubes is introduced. As demonstrated for electrochemically exfoliated graphene, graphene oxide, and reduced graphene oxide, the approach allows for the preparation of highly porous (> 99.9%) and lightweight (<2 mg cm(-3)) aeromaterials with tailored porosity and pore size as well as tailorable shape and size. The unique tubelike morphology with high aspect ratio enables ultralow-percolation-threshold graphene composites (0.03 S m(-1), 0.05 vol%) which even outperform most of the carbon nanotube-based composites, as well as highly conductive aeronetworks (8 S m(-1), 4 mg cm(-3)). On top of that, long-term compression cycling of the aeronetworks demonstrates remarkable mechanical stability over 10 000 cycles, even though no chemical cross-linking is employed. The developed strategy could pave the way for fabrication of various macrostructures of 2D nanomaterials with defined shape, size, as well as micro- and nanostructure, crucial for numerous applications such as batteries, supercapacitors, and filters.
机译:尽管努力制造二维(2D)材料的三维宏观结构,但现有方法仍然缺乏对所得结构的微观(形态,孔隙,孔径)和宏观(形状,尺寸)性能的足够控制。在这项工作中,引入了一种适用于碳2D纳米材料的湿化学组装到互联的宏观网络中的湿化学组装的容易制造方法。如图所示,用于电化学剥离的石墨烯,氧化石墨烯和还原的氧化石墨烯,该方法允许制备高度多孔(> 99.9%)和轻质(<2mg cm(-3))的气动材料,以及量身定制的孔隙率和孔径可定制形状和尺寸。具有高纵横比的独特管状形态使得超级渗透阈值石墨烯复合材料(0.03秒(-1),0.05体积%),其甚至优于大多数基于碳纳米管的复合材料,以及高导电机械(8秒M(-1),4mg cm(-3))。在此之上,航空机构的长期压缩循环,即使没有使用化学交联,即使没有使用化学交联,也可以在10 000周期上表现出显着的机械稳定性。开发的策略可以为制造具有限定形状,大小以及微型和纳米结构的2D纳米材料的各种宏观结构的方法,这对于诸如电池,超级电容器和过滤器等许多应用来说至关重要。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2019年第47期|共12页
  • 作者单位

    Univ Kiel Inst Mat Sci Chair Funct Nanomat Kaiserstr 2 D-24143 Kiel Germany;

    Univ Kiel Inst Mat Sci Chair Funct Nanomat Kaiserstr 2 D-24143 Kiel Germany;

    Univ Kiel Inst Mat Sci Chair Funct Nanomat Kaiserstr 2 D-24143 Kiel Germany;

    Univ Kiel Inst Mat Sci Chair Funct Nanomat Kaiserstr 2 D-24143 Kiel Germany;

    Univ Kiel Inst Mat Sci Chair Synth &

    Real Struct Kaiserstr 2 D-24143 Kiel Germany;

    Univ Kiel Inst Mat Sci Chair Multicomponent Mat Kaiserstr 2 D-24143 Kiel Germany;

    Tech Univ Dresden Ctr Adv Elect Dresden Cfaed Dept Chem &

    Food Chem D-01062 Dresden Germany;

    Tech Univ Dresden Ctr Adv Elect Dresden Cfaed Dept Chem &

    Food Chem D-01062 Dresden Germany;

    Univ Southern Denmark Mads Clausen Inst NanoSYD Alsion 2 DK-6400 Sonderborg Denmark;

    Univ Kiel Inst Mat Sci Chair Multicomponent Mat Kaiserstr 2 D-24143 Kiel Germany;

    Univ Kiel Inst Mat Sci Chair Synth &

    Real Struct Kaiserstr 2 D-24143 Kiel Germany;

    Tech Univ Dresden Ctr Adv Elect Dresden Cfaed Dept Chem &

    Food Chem D-01062 Dresden Germany;

    Univ Kiel Inst Mat Sci Chair Funct Nanomat Kaiserstr 2 D-24143 Kiel Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    2D materials; assembly; hierarchical networks; graphene; polymer composites;

    机译:2D材料;组装;层次结构;石墨烯;聚合物复合材料;

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