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首页> 外文期刊>RSC Advances >Quantum mechanical investigation into the electronic transport properties of a memantine-functionalized gold nanopore biosensor for natural and mutated DNA nucleobase detection
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Quantum mechanical investigation into the electronic transport properties of a memantine-functionalized gold nanopore biosensor for natural and mutated DNA nucleobase detection

机译:用于天然和突变DNA核碱基检测的美金刚功能化金纳米孔生物传感器的电子传输性质的量子力学研究

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Quantum mechanical studies of the electronic transport properties of a memantine-functionalized gold nanopore biosensor for natural and mutated DNA nucleobase detection are reported. In this study, a gold electrode was functionalized with a modified diamondoid structure, called memantine, and the tunnelling current arising from nucleobases was investigated as it translated through the functionalized gold nanopore. Non-equilibrium Green's function (NEGF) and density functional theorem (DFT) methods have been used to analyze and calculate the results. The transmission spectrum for each nucleobase is presented. In order to justify that the resonance peaks are originating from the nucleobases, the Projected Densities of States (PDOS) of the nucleobases were plotted and compared with their corresponding transmission spectra. The electronic wave functions relating to transmission and the device sensitivity have also been shown. The proposed device is demonstrated to detect various natural and mutated nucleobases with a sensitivity ranging from 103 to 107. Finally, differential conductance methods have been found to be effective in detecting nucleobases in the case of overlapping transmission peaks.
机译:报道了用于天然和突变的DNA核碱基检测的美金刚功能化的金纳米孔生物传感器的电子传输性质的量子力学研究。在这项研究中,金电极通过修饰的类金刚烷结构(称为美金刚胺)进行了功能化,并且研究了核碱基通过功能化的金纳米孔转化时产生的隧穿电流。非平衡格林函数(NEGF)和密度泛函定理(DFT)方法已用于分析和计算结果。给出了每个核碱基的透射光谱。为了证明共振峰起源于核碱基,绘制了核碱基的状态投影密度(PDOS)并将其与相应的透射光谱进行比较。还显示了与传输和设备灵敏度有关的电子波功能。该设备被证明可以检测各种天然和突变的核碱基,其灵敏度范围从10 3 到10 7 。最后,在传输峰重叠的情况下,已发现差分电导方法可有效检测核碱基。

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