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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Atomic structure and electronic properties of A(2)B(2)XY (A = Si-Pb, B = Cl-I, and XY = PN and SiS) inorganic double helices: first principles calculations
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Atomic structure and electronic properties of A(2)B(2)XY (A = Si-Pb, B = Cl-I, and XY = PN and SiS) inorganic double helices: first principles calculations

机译:A(2)B(2)XY的原子结构和电子性质(a = si-pb,b = cl-i,xy = pn和sis)无机双螺旋:第一个原则计算

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We study the structural stability and electronic properties of new classes of DNA-like inorganic double helices of the type A(2)B(2)XY (A = Si-Pb, B = Cl-I, and XY = PN and SiS) by employing first principles density functional theory (DFT) calculations including van der Waals interactions. In these quaternary double helices PN or SiS forms the inner helix while the AB helix wraps around the inner helix and the two are interconnected. We find that the bromides and iodides of Ge, Sn, and Pb as well as Pb2Cl2PN form structurally stable double helices while Ge2I2SiS as well as bromides and iodides of Sn and Pb have stable double helices. The atomic structures of different double helices have been analyzed in detail to understand the stability of these systems as there is up to about 80% difference in the interatomic distances in the two helices which is remarkable. Also in these new classes of double helices there is polar covalent bonding in the inner helix due to heteroatoms. We have calculated the DDEC6 partial atomic charges and bond orders which suggest strong covalent bonding in the inner helix. The electronic structure reveals that these double helices are semiconducting and in many cases the band gap is direct. Furthermore, we have studied the effects of doping and found that hole doping is the most appropriate way to tuning their electronic properties.
机译:我们研究了A(2)B(2)xy(a = si-pb,b = cl-i和xy = pn和sis)的新型DNA样无机双螺旋的结构稳定性和电子性质通过采用第一个原理函数理论(DFT)计算,包括van der Waals相互作用。在这些第四纪双螺旋中,PN或SIS形成内螺旋,而AB螺旋缠绕在内螺旋周围,两者互连。我们发现Ge,Sn和Pb的溴化物和碘以及Pb2cl2pn形式的结构稳定的双螺旋,而Ge2i2sis以及Sn和Pb的溴化物和碘化物具有稳定的双螺旋。已经详细分析了不同双螺旋的原子结构,以了解这些系统的稳定性,因为两个螺旋中的间隙距离高达约80%差异,这是显着的。同样在这些新的双螺旋中,由于杂原子,内螺旋中存在极性共价键合。我们已经计算了DDEC6部分原子收费和债券订单,其中建议在内螺旋中强烈共价键合。电子结构揭示了这些双螺旋是半导体,并且在许多情况下,带隙是直接的。此外,我们研究了兴奋剂的影响,发现孔掺杂是调整其电子特性的最合适的方法。

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