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Nucleobase-functionalized graphene nanoribbons for accurate high-speed DNA sequencing

机译:Nucleobase-functionalized石墨烯带的制作都为准确高速DNA测序

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摘要

We propose a water-immersed nucleobase-functionalized suspended graphene nanoribbon as an intrinsically selective device for nucleotide detection. The proposed sensing method combines Watson-Crick selective base pairing with graphene's capacity for converting anisotropic lattice strain to changes in an electrical current at the nanoscale. Using detailed atomistic molecular dynamics (MD) simulations, we study sensor operation at ambient conditions. We combine simulated data with theoretical arguments to estimate the levels of measurable electrical signal variation in response to strains and determine that the proposed sensing mechanism shows significant promise for realistic DNA sensing devices without the need for advanced data processing, or highly restrictive operational conditions.
机译:我们提出一个water-immersednucleobase-functionalized悬浮石墨烯nanoribbon本质上作为一种选择性的设备核苷酸检测。方法结合沃森克里克选择性基地与石墨烯的转换能力各向异性的晶格应变的变化电流在纳米尺度上。详细的原子的分子动力学(MD)在环境模拟,研究传感器操作条件。理论参数估计的水平可测的电信号变化应对压力和确定的提出传感机理意义重大承诺为现实的DNA传感设备先进的数据处理的需要,或高度严格的操作条件。

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