Department of Materials Science and Engineering, College of Engineering, Peking University , Beijing 100871, P. R. China.
ACS Nano. 2017 Mar 28;11(3):2944-2951. doi: 10.1021/acsnano.6b08323. Epub 2017 Feb 21.
Graphene has a planar atomic structure with high flexibility and might be used as ultrathin conductive glues or adhesion layers in electronics and other applications. Here, we show that graphene oxide (GO) sheets condensed from solution can act as a pure, thin-layer, nonpenetrating glue for fabrication of vertical architectures anchored on rigid and flexible substrates. Carbon nanotube (CNT) sponges are used as a porous template to make polymer-reinforced composite columns, to achieve both high conductivity and elastic behavior. These vertical columns are fixed on a substrate by reduced GO sheets as an electrode and exhibit reversible resistance change under large-strain compression for many cycles. Similar to the CNT gecko feet, we disclose high adhesion forces at the CNT-GO and GO-SiO interfaces by mechanical tests and theoretical calculation. Three-dimensional CNT, graphene, and nanowire networks with our GO glue-electrodes have potential applications as energy storage electrodes, flexible sensors, functional composites, and vertical interconnects.
石墨烯具有平面原子结构,柔韧性高,可用作电子产品等领域中的超薄导电胶或附着层。在这里,我们发现氧化石墨烯(GO)片可以自溶液中凝聚,形成一种纯净的、薄型、不渗透的胶,可用于制造垂直结构,这些结构的基底可以是刚性的也可以是柔性的。我们利用碳纳米管(CNT)海绵作为多孔模板来制造聚合物增强复合材料柱,以实现高导电性和弹性行为。这些垂直柱通过还原氧化石墨烯片固定在基底上,作为电极,在大应变压缩下可进行多次循环的可逆电阻变化。类似于 CNT 壁虎脚,我们通过机械测试和理论计算揭示了 CNT-GO 和 GO-SiO 界面处的高粘附力。具有 GO 胶电极的三维 CNT、石墨烯和纳米线网络具有作为储能电极、柔性传感器、功能复合材料和垂直互连的潜在应用。