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Comparison of electrical properties of M- and λ-DNA attached on the Au metal electrodes with nanogap

机译:具有纳米间隙的金金属电极上M-和λ-DNA的电学性质比较

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We successfully prepared the modified M-DNA molecular wires by the insertion of the divalent zinc ions (Zn~(2+)) in every base pair of λ-DNA molecules. We found that the current-voltage (Ⅰ-Ⅴ) characteristics of M-DNA are distinctively different from those measured using other types of DNA molecules including λ-DNA: one of the unique features of the modified M-DNA molecular wires was the metallic property observed in the Ⅰ-Ⅴ characteristics (i.e., a linear Ⅰ-Ⅴ relationship), suggesting that they might be used to build the metallic nanowire for the future nanodevices. Several parameters such as (1) humidity during the electrical measurement and (2) pH in preparation of M-solution are important factors to decide the Ⅰ-Ⅴ characteristics of M-DNA molecular wires. For instance, if the λ-DNA molecules were treated with the pH value of less than 8, they did not show the characteristics of metallic M-DNA molecular wires. In addition, the conductivity of M-DNA molecular wires decreases as the measurement pressure moves to the high vacuum range, although the unique feature (i.e., linear relationship) was maintained even at 10~(-5) Torr.
机译:我们通过在每个λ-DNA分子碱基对中插入二价锌离子(Zn〜(2+))成功地制备了修饰的M-DNA分子线。我们发现,M-DNA的电流-电压(Ⅰ-Ⅴ)特性与使用其他类型的DNA分子(包括λ-DNA)测得的电流-电压特性有显着差异:修饰的M-DNA分子线的独特特征之一是金属在Ⅰ-Ⅴ特性(即线性Ⅰ-Ⅴ关系)中观察到的特性,表明它们可能被用于构建未来纳米器件的金属纳米线。 (1)电学测量中的湿度和(2)M溶液制备中的pH是决定M-DNA分子线的Ⅰ-Ⅴ特性的重要因素。例如,如果用小于8的pH值处理λ-DNA分子,它们就不会表现出金属M-DNA分子线的特性。另外,尽管独特的特征(即线性关系)甚至保持在10-(-5)托,但M-DNA分子线的电导率随着测量压力移至高真空范围而降低。

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