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DNA sequencing with titanium nitride electrodes

机译:用氮化钛电极进行DNA测序

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We construct a hydrogen-bond based metal-molecule-metal junction, which contains two identical "reader" molecules, one single DNA base as a bridged molecule, and two titanium nitride electrodes. Hydrogen bonds are formed between "reader" molecules and DNA base, whereas titanium-sulfur bonds are formed between "reader" molecules and titanium nitride electrodes. We perform electronic structure calculations for both the bare bridged molecule and the full metal-molecule-metal system. The projected density of states shows that when the molecule is connected to the titanium nitride electrode, the energy levels of the bridged molecule are shifted, with an indirect effect on the hydrogen bonds. This is similar to the case for a gold electrode but with a more pronounced effect. We also calculate the current-voltage characteristics for the molecular junctions containing each DNA base. Results show that titanium nitride as an electrode can generate distinct conductance for each DNA base, providing an alternative electrode for DNA sequencing.
机译:我们构建了一个基于氢键的金属-分子-金属连接,其中包含两个相同的“阅读器”分子,一个作为桥接分子的DNA碱基和两个氮化钛电极。在“阅读器”分子和DNA碱基之间形成氢键,而在“阅读器”分子和氮化钛电极之间形成钛-硫键。我们对裸桥分子和全金属分子金属系统都进行电子结构计算。投影的状态密度表明,当分子连接到氮化钛电极上时,桥连分子的能级发生移动,对氢键产生间接影响。这类似于金电极的情况,但效果更明显。我们还计算了包含每个DNA碱基的分子连接的电流-电压特性。结果表明,氮化钛作为电极可以为每个DNA碱基产生不同的电导率,为DNA测序提供了另一种电极。

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