首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Large-area, three-dimensional interconnected graphene oxide intercalated with self-doped polyaniline nanofibers as a free-standing electrocatalytic platform for adenine and guanine
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Large-area, three-dimensional interconnected graphene oxide intercalated with self-doped polyaniline nanofibers as a free-standing electrocatalytic platform for adenine and guanine

机译:大面积,三维互连氧化石墨烯与自掺杂聚苯胺纳米纤维插入,作为独立的腺嘌呤和鸟嘌呤电催化平台

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摘要

In this work.we prepared large-area, three-dimensional interconnected graphene oxide (GNO) intercalated by self-doped polyaniline nanofibers (SPAN, a copolymer of aniline and m-aminobenzenesulfonic acid) through a simple adsorption and intercalation route via sonication of the mixed dispersions of both components. The strong π-π~* stacking between the backbones of SPAN and the GNO basal planes, and the electrostatic repulsion between the negatively charged SPAN and graphene oxide sheets yield a unique free-standing, three-dimensional interconnected nanostructure. The nanocomposlte possesses a large specific surface area and maintains a homogenous and stable dispersion with SPAN, which endows it with a high conductivity and good electrocatalytic activity. Because the negative charge and specific structure of the nanocomposlte can prompt the adsorption of positively charged guanine and adenine via strong π-π~* interactions or electrostatic adsorption, the hybrid was adopted as an excellent sensing platform for highly sensitive determination of guanine and adenine. The electrocatalytic platform exhibited some advantages, such as high sensitivity, good reproducibility and long-term stability.
机译:在这项工作中,我们通过超声波的简单吸附和嵌入途径,通过自掺杂聚苯胺纳米纤维(SPAN,苯胺和间氨基苯磺酸的共聚物)插入了大面积的三维互连氧化石墨烯(GNO)。两种成分的混合分散体。 SPAN的主干和GNO基面之间的强π-π〜*堆积以及带负电荷的SPAN和氧化石墨烯片之间的静电排斥产生了独特的独立的三维互连纳米结构。该纳米复合材料具有较大的比表面积,并与SPAN保持均匀且稳定的分散,这使其具有高电导率和良好的电催化活性。由于纳米复合材料的负电荷和特定结构可以通过强π-π〜*相互作用或静电吸附来促进带正电荷的鸟嘌呤和腺嘌呤的吸附,因此该杂合物被用作出色的传感平台,用于高灵敏度地测定鸟嘌呤和腺嘌呤。该电催化平台具有较高的灵敏度,良好的重现性和长期稳定性等优点。

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