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DNA-Directed Self-Assembly of Graphene Oxide with Applications to Ultrasensitive Oligonucleotide Assay

机译:氧化石墨烯的DNA定向自组装及其在超灵敏寡核苷酸检测中的应用

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摘要

Controlled graphene or its derivatives' assembly is of growing interest in many areas. However, achieving control over their assembly into precise and predictable architectures has been challenging and is still a bottleneck to their utilization. Herein, we report for the first time the use of DNA hybridization for the controllable assembly of a graphene nanosheet. Moreover, with the help of dynamic light scattering technique, we extended the above studies by exploiting the DNA graphene dispersed sheets as highly ultrasensitive detection of oligonuleotides for the fabrication of a novel biosensing strategy, which shows high sensitivity and excellent selectivity. This work will show a new general route to graphene-based lamellar composite materials and would bring about advances in the research of graphene-based biofunctional materials for specific applications in biodiagnostics, nanoelectronics, and bionanotechnology.
机译:受控石墨烯或其衍生物的组装在许多领域都受到越来越多的关注。但是,实现对其组装成精确且可预测的体系结构的控制具有挑战性,并且仍然是其使用的瓶颈。本文中,我们首次报道了DNA杂交技术在石墨烯纳米片可控组装中的应用。此外,借助动态光散射技术,我们通过利用DNA石墨烯分散片作为寡核苷酸的超超灵敏检测方法,以制造新颖的生物传感策略而扩展了上述研究,该方法显示了高灵敏度和出色的选择性。这项工作将显示出一条新的通向基于石墨烯的层状复合材料的一般途径,并将带来针对生物诊断,纳米电子学和生物纳米技术的特定应用的基于石墨烯的生物功能材料的研究进展。

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