Three-dimensional Nanoporous Graphene-based Materials and Their Applications

Hyunok Jung, Yein Kang
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引用次数: 2

Abstract

s Graphene, a two-dimensional material with a single atomic layer, has recently become a major research focus in various applications such as electronic devices, sensors, energy storage, catalysts, and adsorbents, because of its large theoretical surface area, excellent electrical conductivity, outstanding chemical stability, and good mechanical properties. Recently, 3D nanoporous graphene structures have received tremendous attention to expand the application of 2D graphene. Here, we overview the synthesis of 3D nanoporous graphene network structure with two-dimensional graphite oxide sheets, the control of porous parameters such as specific surface area, pore volume and pore size etc, and the modification of electronic structure by heteroatom doping along with its various applications. The 3D nanoporous graphene shows superior performance in diverse applications as a promising key material. Consequently, 3D nanoporous graphene can lead the future for advanced nanotechnology.
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三维纳米多孔石墨烯基材料及其应用
石墨烯是一种具有单原子层的二维材料,由于其具有较大的理论表面积、优异的导电性、优异的化学稳定性和良好的机械性能,近年来已成为电子器件、传感器、储能、催化剂和吸附剂等各种应用领域的主要研究热点。近年来,三维纳米多孔石墨烯结构得到了广泛的关注,以扩大二维石墨烯的应用。本文综述了利用二维氧化石墨片合成三维纳米多孔石墨烯网络结构、控制比表面积、孔体积、孔径等多孔参数、杂原子掺杂修饰电子结构及其应用。三维纳米多孔石墨烯作为一种有前景的关键材料,在各种应用中表现出优异的性能。因此,3D纳米多孔石墨烯可以引领未来的先进纳米技术。
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