Department of Electrical Engineering, Arak Branch, Islamic Azad University, Arak, Iran.
Department of Electrical Engineering, Arak Branch, Islamic Azad University, Arak, Iran.
Bioelectrochemistry. 2021 Apr;138:107721. doi: 10.1016/j.bioelechem.2020.107721. Epub 2020 Dec 10.
In this paper, we present a computational study investigating the electronic properties of DNA nucleobases (Adenine, Guanine, Cytosine and Thymine) on χ borophene using a combination of density functional theory (DFT) and non-equilibrium Green's function (NEGF) formalism.The adsorption energy, equilibrium distance, net charge of transfer, and density of states (DOSs) are obtained at different molecule orientations and selective positions.The most stable geometries of DNA molecules on χ borophene are also determined.By using (NEGF) formalism, the electronic transmission and electrical current are calculated separately as a function of applied bias voltage for each nucleobase. We find that attaching this molecule to borophene changes the electrical conductivity.Results indicate the strong potential of borophene in adsorption of the DNA molecules, meaning this two-dimensional material could be a suitable candidate for future DNA sequencing devices.
在本文中,我们使用密度泛函理论(DFT)和非平衡格林函数(NEGF)方法的组合,对 χ 型硼烯上的 DNA 碱基(腺嘌呤、鸟嘌呤、胞嘧啶和胸腺嘧啶)的电子性质进行了计算研究。在不同的分子取向和选择位置上,得到了吸附能、平衡距离、转移净电荷和态密度(DOSs)。还确定了 DNA 分子在 χ 型硼烯上的最稳定几何形状。通过使用(NEGF)公式,分别计算了每个碱基在施加偏压时的电子传输和电流。我们发现,将这种分子附着到硼烯上会改变电导率。结果表明,硼烯对 DNA 分子的吸附具有很强的潜力,这意味着这种二维材料可能是未来 DNA 测序设备的合适候选材料。