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Charge transport in desolvated DNA

机译:去溶剂化DNA中的电荷传输

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The conductivity of DNA in molecular junctions is often probed experimentally under dry conditions, but it is unclear how much of the solvent remains attached to the DNA and how this impacts its structure, electronic states, and conductivity. Classical MD simulations show that DNA is unstable if the solvent is removed completely, while a micro-hydrated system with few water molecules shows similar charge transport properties as fully solvated DNA does. This surprising effect is analyzed in detail by mapping the density functional theory-based electronic structure to a tight-binding Hamiltonian, allowing for an estimate of conductivity of various DNA sequences with snapshot-averaged Landauer's approach. The characteristics of DNA charge transport turn out to be determined by the nearest hydration shell(s), and the removal of bulk solvent has little effect on the transport.
机译:DNA在分子连接处的电导率通​​常是在干燥条件下通过实验进行探测的,但尚不清楚有多少溶剂保持附着在DNA上,以及如何影响其结构,电子状态和电导率。经典的MD模拟表明,如果完全除去溶剂,DNA不稳定,而几乎没有水分子的微水合系统显示出与完全溶剂化的DNA相似的电荷传输特性。通过将基于密度泛函理论的电子结构映射到紧密结合的哈密顿量,可以详细分析这种令人惊讶的效果,从而可以使用快照平均Landauer方法估算各种DNA序列的电导率。事实证明,DNA电荷传输的特性取决于最近的水合壳,而去除大量溶剂对传输几乎没有影响。

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