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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Graphene on Au(111): A Highly Conductive Material with Excellent Adsorption Properties for High-Resolution Bio/Nanodetection and Identification
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Graphene on Au(111): A Highly Conductive Material with Excellent Adsorption Properties for High-Resolution Bio/Nanodetection and Identification

机译:Au(111)上的石墨烯:一种具有出色吸附性能的高导电材料,可用于高分辨率生物/纳米检测和鉴定

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摘要

Based on numerical simulations and experimental studies, we show that a composite material which consists of a sheet of graphene on a Au(111) surface exhibits both an excellent conductivity and the ability to stably adsorb biomolecules. If we use this material as a substrate, the signal-to-noise ratios can be greatly enhanced. The key to this unique property is that graphene can stably adsorb carbon-based rings, which arewidely present in biomolecules, due to p-stacking interactions while the substrate retains the excellent conductivity of gold. Remarkably, the signal-to-noise ratio is found to be so high that the signal is clearly distinguishable for different nucleobases when an ssDNA is placed on this graphene-on-Au(111) material. Our finding opens opportunities for a range of bioanoapplications including single-DNA-molecule-based biodevices and biosensors, particularly, high-accuracy sequencing of DNA strands with repeating segments.
机译:基于数值模拟和实验研究,我们表明,由在Au(111)表面上的一层石墨烯组成的复合材料既具有出色的导电性,又具有稳定吸附生物分子的能力。如果我们使用这种材料作为基材,则信噪比可以大大提高。这种独特性能的关键在于,石墨烯可以稳定地吸附生物分子中广泛存在的碳基环,这是由于p堆积相互作用而基体保留了出色的金导电性。值得注意的是,发现信噪比非常高,以至于当将ssDNA放置在Au-111上石墨烯材料上时,该信号对于不同的核碱基可明显区分。我们的发现为一系列生物/纳米应用带来了机会,包括基于单DNA分子的生物设备和生物传感器,特别是具有重复片段的DNA链的高精度测序。

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