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Nanoveneers: An Electrochemical Approach to Synthesizing Conductive Layered Nanostructures

机译:纳维纳:合成导电层状纳米结构的电化学方法

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摘要

We report herein a facile electrochemical approach to synthesizing various layered composite films of nanomaterials and conducting polymers, called nanoveneers. Layered structures of polypyrrole film with single-walled carbon nanotubes (SWNTs), graphene, and Au nanoparticles have been obtained by electropolymerization of pyrrole molecules on a heavily doped silicon wafer preloaded with target conductive nanomaterials. A free-standing, transparent, and highly conductive composite film was achieved after peeling off from a silicon wafer. Different from traditional homogeneous composite materials, such kinds of nanoveneers combined to the best extent the structural continuity and processability of conducting polymers with the high conductivity and functionality of discontinuous SWNTs, graphene, and other nanomaterials. The layered electrochemical deposition provides a great freedom for constructing various nanostructures with well-controlled geometry and thus physicochemical properties, as demonstrated by SWNT/polypyrrole nanoveneers. These nanoveneers are particularly attractive in areas of chemical sensors, labels, transparent electronics, and optoelectronics.
机译:我们在本文中报道了一种简便的电化学方法,用于合成纳米材料和导电聚合物的各种层状复合膜,称为纳米膜。通过将吡咯分子在预载有目标导电纳米材料的重掺杂硅片上进行电聚合,可以获得具有单壁碳纳米管(SWNT),石墨烯和Au纳米粒子的聚吡咯膜的层状结构。从硅晶片上剥离下来后,获得了独立的,透明的,高导电性的复合膜。与传统的均质复合材料不同,此类纳米胶粘剂在最大程度上结合了导电聚合物的结构连续性和可加工性,以及不连续的SWNT,石墨烯和其他纳米材料的高导电性和功能性。分层的电化学沉积为构建具有良好控制的几何结构并因此具有理化特性的各种纳米结构提供了极大的自由度,如SWNT /聚吡咯纳米贴片所证明的。这些纳米胶粘剂在化学传感器,标签,透明电子学和光电学领域特别有吸引力。

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