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Ni2+ doping DNA: a semiconducting biopolymer

机译:Ni2 +掺杂DNA:一种半导体生物聚合物

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摘要

DNA is a one-dimensional nanowire in nature, and it may not be used in nanodevices due to its low conductivity. In order to improve the conducting property of DNA, divalent Ni2+ are incorporated into the base pairs of DNA at pH >= 8.5 and nickel DNA (Ni-DNA) is formed. Conducting scanning probe microscopy (SPM) analysis reveals that the Ni-DNA is a semiconducting biopolymer and the Schottky barrier of Ni-DNA reduces to 2 eV. Meanwhile, electrochemical analysis by cyclic voltammetry and AC impedance shows that the conductance of Ni-DNA is better than that of native DNA by a factor of approximately 20-fold. UV spectroscopy and DNA base pair mismatch analyses show that the conducting mechanism of Ni-DNA is due to electrons hopping through the pi-pi stacking of DNA base pairs. This biomaterial is a designable one-dimensional semiconducting polymer for usage in nanodevices.
机译:DNA本质上是一维纳米线,由于其低电导率,可能无法用于纳米设备。为了改善DNA的导电性能,将二价Ni2 +掺入pH> = 8.5的DNA碱基对中,形成镍DNA(Ni-DNA)。进行扫描探针显微镜(SPM)分析表明,Ni-DNA是一种半导体生物聚合物,Ni-DNA的肖特基势垒降低至2 eV。同时,通过循环伏安法和交流阻抗的电化学分析表明,Ni-DNA的电导率比天然DNA的电导率高约20倍。紫外光谱和DNA碱基对错配分析表明,Ni-DNA的传导机制是由于电子跳过DNA碱基对的pi-pi堆积。这种生物材料是一种可设计的一维半导体聚合物,可用于纳米设备。

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