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Envisaging quantum transport phenomenon in a muddled base pair of DNA

机译:设想DNA混乱的碱基对中的量子传输现象

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The effect of muddled base pair on electron transfer through a deoxyribonucleic acid (DNA) molecule connected to the gold electrodes has been elucidated using tight binding model. The effect of hydrogen and nitrogen bonds on the resistance of the base pair has been minutely observed. Using the semiempirical extended Huckel approach within NEGF regime, we have determined the current and conductance vs. bias voltage for disordered base pairs of DNA made of thymine (T) and adenine (A). The asymmetrical behaviour amid five times depreciation in the current characteristics has been observed for deviated Aua??AT base paira??Au devices. An interesting revelation is thatthe conductance of the intrinsic AT base pair configuration attains dramatically high values with the symmetrical zig-zag pattern of current, which clearly indicates the transformation of the bond length within the strands of base pair when compared with other samples. A thorough investigation of the transmission coefficients $T(E)$ and HOMOa??LUMO gap reveals the misalignment of the strands in base pairs of DNA. The observed results present an insight to extend this work to build biosensing devices to predict the abnormality with the DNA.
机译:已使用紧密结合模型阐明了碱基对混乱对电子通过与金电极连接的脱氧核糖核酸(DNA)分子的转移的影响。已经观察到氢和氮键对碱基对的电阻的影响。使用NEGF体制内的半经验扩展Huckel方法,我们确定了由胸腺嘧啶(T)和腺嘌呤(A)组成的无序碱基对的电流,电导与偏置电压的关系。对于偏离的Aua-AT碱基对成对的Δα-Au器件,已经观察到电流特性下降五倍的不对称行为。一个有趣的启示是,固有的AT碱基对构型的电导率在电流的对称Z字形模式下获得了极高的值,与其他样品相比,它清楚地表明了碱基对链内键长的变化。彻底研究传输系数$ T(E)$和HOMOaΔLUMO缺口,发现DNA碱基对中链的错位。观察到的结果为扩展这项工作以构建生物传感装置以预测DNA异常提供了见识。

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