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The effect of the number of parallel DNA molecules on electric charge transport through 'standing DNA'

机译:平行DNA分子数目对通过“站立DNA”的电荷传输的影响

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摘要

We present morphological and electrical characterization of double-stranded DNA (dsDNA) molecules covalently bound to two metal electrodes: an underlying gold surface and a gold nanoparticle (GNP). Conductive atomic force microscope (cAFM) with a metallized tip is used to perform current-voltage (I-V) measurements through dsDNA molecules, connected to GNPs of different diameters 5,10 and 20 nm. The number of DNA molecules coating the GNP is expected to vary with the surface area of the GNP. This number and the portion of the GNP surface area enabling hybridization of the DNA determine the number of DNA molecules connecting the GNP to the gold surface. The larger the diameter of the GNP the higher the expected number of dsDNA molecules connecting it to the gold surface and thus the expected current. Our results show similar currents for all three GNP sizes, indicating that current flows through the same number of molecules regardless of the diameter of the measured GNP. The measured currents, 220 nA at 2 V, are in accordance with our previous reports (Cohen et al 2005 Proc. Natl Acad. Sci. USA 102 11589-93; Cohen et al 2006 Faraday Discuss. 131 367-76) in which we demonstrated the validity of the experimental system. In particular, for the 5 nm GNP, we conclude that the current possibly flows through two to three molecules, likely only one, and that a single short dsDNA molecule can support at least approx 70 nA, and probably 220 nA.
机译:我们目前共价结合到两个金属电极:底层的金表面和金纳米粒子(GNP)的双链DNA(dsDNA)分子的形态和电学表征。具有金属化尖端的导电原子力显微镜(cAFM)用于通过dsDNA分子执行电流-电压(I-V)测量,该dsDNA分子连接到不同直径的5,10和20 nm的GNP。覆盖GNP的DNA分子的数量预计会随GNP的表面积而变化。该数目和能够与DNA杂交的GNP表面积部分决定了将GNP连接到金表面的DNA分子的数目。 GNP的直径越大,将其连接到金表面的dsDNA分子的预期数量就越高,因此预期电流也就越高。我们的结果显示,所有三种GNP大小的电流都相似,这表明电流流经相同数量的分子,而与所测量的GNP的直径无关。在2 V下测得的电流220 nA,符合我们以前的报告(Cohen等2005 Proc。Natl Acad。Sci。USA 102 11589-93; Cohen等2006 Faraday Discuss。131 367-76)。证明了实验系统的有效性。特别是对于5 nm GNP,我们得出的结论是,电流可能流过两到三个分子,可能只有一个,并且单个dsDNA短分子可以支持至少约70 nA,可能约为220 nA。

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