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Diamondoid-functionalized gold nanogaps as sensors for natural, mutated, and epigenetically modified DNA nucleotides

机译:Diamondoid-functionalized黄金nanogaps传感器对自然、突变和epigenetically修改DNA核苷酸

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摘要

Modified tiny hydrogen-terminated diamond structures, known as diamondoids, show a high efficiency in sensing DNA molecules. These diamond cages, as recently proposed, could offer functionalization possibilities for gold junction electrodes. In this investigation, we report on diamondoid-functionalized electrodes, showing that such a device would have a high potential in sensing and sequencing DNA. The smallest diamondoid including an amine modification was chosen for the functionalization. Here, we report on the quantum tunneling signals across diamondoid-functionalized Au(111) electrodes. Our work is based on quantum-transport calculations and predicts the expected signals arising from different DNA units within the break junctions. Different gating voltages are proposed in order to tune the sensitivity of the functionalized electrodes with respect to specific nucleotides. The relation of this sensitivity to the coupling or decoupling of the electrodes is discussed. Our results also shed light on the sensing capability of such a device in distinguishing the DNA nucleotides, in their natural and mutated forms.
机译:修改小hydrogen-terminated钻石结构,称为菱形的,显示高传感DNA分子的效率。钻石的笼子里,最近提议,可以提供功能化金结的可能性电极。diamondoid-functionalized电极,显示这样的设备将有很高的潜力传感和DNA测序。菱形的包括胺改性功能化的选择。量子隧穿的信号diamondoid-functionalized盟(111)电极。基于量子传输的计算工作并预测预期的信号引起的在打破连接不同DNA单位。提出了不同的控制电压调整功能化的敏感性电极对特定的核苷酸。这种敏感性的关系耦合或解耦的电极进行了探讨。结果还揭示了传感功能在区分DNA这样的设备核苷酸,在自然和突变形式。

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