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Direct current electrical characterization of ds-DNA in nanogap junctions

机译:纳米间隙连接中ds-DNA的直流电表征

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Measurements of DNA conductivity, hybridization, and melting using electronic means can have wide applications in molecular electronics and biological sensors. We have fabricated nanogap break-junctions by electromigration through thin gold-on-titanium films. 18-mer thiolated ds-DNA molecules were covalently attached between the electrodes and dc electrical measurements were done. The conductance was measured through the molecule before and after a temperature ramp from 300 to 400 K. A dramatic decrease in conductance was observed, analogous to an electrical fuse, possibly attributed to complete or partial denaturing of the ds-DNA molecules bridging the nanogaps. We also show evidence that the dc resistance of dry DNA strands of the same length decreases with increasing guanine-cytosine content in the sequence with values ranging from 10 M Ω to 2 G Ω. These findings can have important consequences in DNA-based molecular electronics and direct label-free detection of DNA hybridization.
机译:使用电子手段测量DNA电导率,杂交和解链可以在分子电子学和生物传感器中广泛应用。我们通过钛金薄膜上的电迁移来制造纳米间隙断裂结。将18-mer巯基化的ds-DNA分子共价连接在电极之间,并进行直流电测量。在从300 K到400 K的温度上升之前和之后测量通过该分子的电导。观察到电导急剧下降,类似于电熔丝,可能归因于桥接纳米间隙的ds-DNA分子完全或部分变性。我们还显示了相同长度的干燥DNA链的直流电阻随序列中鸟嘌呤-胞嘧啶含量的增加而降低的值,范围在10 MΩ至2 GΩ之间。这些发现可能对基于DNA的分子电子学和DNA杂交的无标签直接检测产生重要影响。

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