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首页> 外文期刊>ACS nano >Mechanically Assembled, Three-Dimensional Hierarchical Structures of Cellular Graphene with Programmed Geometries and Outstanding Electromechanical Properties
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Mechanically Assembled, Three-Dimensional Hierarchical Structures of Cellular Graphene with Programmed Geometries and Outstanding Electromechanical Properties

机译:机械组装,具有编程几何形状的蜂窝石墨烯的三维层次结构,以及出色的机电性能

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摘要

Three-dimensional (3D) cellular graphene structures have wide applications in energy storage, catalysis, polymer composites, electromagnetic shielding, and many others. However, the current strategies to form cellular graphene are only able to realize limited structure control and are hard to achieve the construction of 3D hierarchical architectures with complex, programmed configurations, limiting the design capabilities to satisfy various next-generation device applications. In addition, cellular graphene usually exhibits limited electromechanical properties, and its electrical and electrochemical performances are dramatically affected by mechanical deformations, constraining its applications in emerging wearable electronics and energy devices. Herein, we report a simple, general, and effective route to 3D hierarchical architectures of cellular graphene with desired geometries through the use of a mechanically guided, 3D assembly approach to overcome the aforementioned two challenges. Demonstrations include more than 10 3D hierarchical architectures with diverse configurations, ranging from mixed tables and tents, to double-floor helices, to kirigami/origami-inspired structures, and to fully separated multilayer architectures. The LED arrays interconnected with 3D helical coils and 3D interdigital supercapacitors fabricated with solid-state electrolytes provide prototypic examples of wearable devices that exhibit outstanding electromechanical properties and can maintain stable performances with little change in the electrical and electrochemical responses under extreme deformations, in both the static and cyclic loading conditions.
机译:三维(3D)蜂窝石墨烯结构在储能,催化,聚合物复合材料,电磁屏蔽等中具有广泛的应用。然而,形成蜂窝石墨烯的当前策略仅能够实现有限的结构控制,并且很难实现具有复杂的编程配置的3D分层架构的构建,这限制了满足各种下一代设备应用的设计能力。此外,细胞石墨烯通常表现出有限的机电性能,其电学和电化学性能急剧地受到机械变形的影响,限制其在新兴可佩戴电子设备和能量装置中的应用。这里,我们通过使用机械引导的3D组装方法来报告具有所需几何形状的蜂窝石墨烯的三维层级架构的简单,一般,有效的途径,以克服上述两个挑战。示范包括具有多种配置的10多个3D分层架构,从混合桌子和帐篷,双层螺旋,以双层螺旋到Kirigami / Origami-Inspired结构,以及完全分离的多层架构。使用固态电解质制造的3D螺旋线圈和3D斜管超级电容器互联的LED阵列提供了可穿戴设备的原型示例,其具有出色的机电性能,并且可以在极端变形下保持稳定的性能和电化学响应几乎没有变化的性能。静态和循环加载条件。

著录项

  • 来源
    《ACS nano》 |2018年第12期|共8页
  • 作者单位

    Univ Missouri Dept Mech &

    Aerosp Engn Columbia MO 65211 USA;

    Univ Missouri Dept Mech &

    Aerosp Engn Columbia MO 65211 USA;

    Tsinghua Univ AML Dept Engn Mech Ctr Flexible Elect Technol Beijing 100084 Peoples R China;

    Univ Missouri Dept Mech &

    Aerosp Engn Columbia MO 65211 USA;

    Univ Missouri Dept Biomed Biol &

    Chem Engn Columbia MO 65211 USA;

    Univ Missouri Dept Biomed Biol &

    Chem Engn Columbia MO 65211 USA;

    Univ Missouri Dept Mech &

    Aerosp Engn Columbia MO 65211 USA;

    Univ Missouri Dept Mech &

    Aerosp Engn Columbia MO 65211 USA;

    Tsinghua Univ AML Dept Engn Mech Ctr Flexible Elect Technol Beijing 100084 Peoples R China;

    Univ Missouri Dept Mech &

    Aerosp Engn Columbia MO 65211 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    cellular graphene; 3D assembly; flexible; stretchable; supercapacitor; LED;

    机译:细胞石墨烯;3D组装;柔性;可拉伸;超级电容器;LED;

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