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Effect of Electronic Coupling of Watson-Crick Hopping in DNA Poly(dA)-Poly(dT)

机译:Watson-Crick跳跃在DNA多(DA)-Poly(DT)中的电子耦合的影响

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Charge transport properties of poly(dA)-poly(dT) DNA has been studied by using thigh binding Hamiltonian approach. Molecule DNA that we use consist of 32 base pair of adenine (A) and thymine (T) and backbone is consist of phosphate and sugar. The molecule DNA is contacted electrode at both ends. Charge transport in molecule DNA depend on the environment, we studied the effect of electronic coupling of Watson-Crick hopping in poly(dA)-poly(dT) DNA to transmission probability and characteristic I-V. The electronic coupling constant influence charge transport between adenine-thymine base pairs at the same site. Transmission probability is studied by using transfer matrix and scattering matrix method, and the result of transmission probability is used to calculate the characteristic I-V by using formula Landauer Buttiker. The result shows that when the electronic coupling increase then transmission probability and characteristic I-V increase slightly.
机译:通过使用大腿绑定Hamiltonian方法研究了聚(DA)-Poly(DT)DNA的电荷运输性能。我们使用的分子DNA由32个碱基对腺嘌呤(A)和胸腺嘧啶(T)和骨架组成,由磷酸盐和糖组成。分子DNA在两端接触电极。分子DNA的电荷运输取决于环境,研究了Watson-Crick跳跃在聚(DA)-Poly(DT)DNA中的电子耦合对透射概率和特征I-V的影响。电子耦合恒定影响同一部位在腺嘌呤胸腺碱基对之间的电荷输送。通过使用传输矩阵和散射矩阵方法研究传输概率,传输概率的结果用于通过使用公式Landauer扣眼计算特性I-V.结果表明,当电子耦合增加然后略微增加传输概率和特征I-V。

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