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首页> 外文期刊>Nanoscale >Quantum spin Hall insulators in functionalized arsenene (AsX, X = F, OH and CH3) monolayers with pronounced light absorption
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Quantum spin Hall insulators in functionalized arsenene (AsX, X = F, OH and CH3) monolayers with pronounced light absorption

机译:功能化的量子自旋霍尔绝缘体arsenene (AsX, X = F和CH3)层明显的光吸收

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摘要

The search for new two-dimensional topological insulators (2D-TIs) with large band gaps is of great interest and importance. Our first-principles calculations predicted three candidates for 2D-TIs, arsenene functionalized with F, OH and CH3 groups (AsX, X = F, OH and CH3), which preserved large bulk band gaps from 100 to 160 meV (up to 260 meV) derived from the spin-orbit coupling (SOC) within the p(x,y) orbitals. This picture is similar to what was reported for an AsH monolayer with a band gap of 193 meV. Ab initio molecular dynamic (AIMD) simulations demonstrated the thermal stabilities of the AsX monolayers even at 500 K. The nontrivial topological phase was confirmed by the topological invariant Z(2) and topological edge state. The topological electronic bandgap of the AsF monolayer can be effectively modulated by biaxial tensile strain and vertical external electric field. In addition, pronounced light absorption in the near-infrared and visible range of the solar spectrum was expected for the AsX (X = H, F) monolayers from the adsorption peaks at 0.45-1.6 eV, which is attractive for light harvesting. The nontrivial quantum spin Hall (QSH) insulators AsX could be promising candidates for practical room-temperature applications in dissipationless transport devices and photovoltaics.
机译:寻找新的二维拓扑绝缘体(2 d-tis)的大带隙极大的兴趣和重要性。采用基于计算预测三个候选人2 d-tis arsenene功能化F,哦,甲基组(AsX, X = F,哦,CH3)保存大型散货带隙100 - 160伏(高达260伏)派生的在手性耦合(SOC)内p (x, y)轨道。报道灰单层的带隙193伏。仿真证明了热稳定性澳交所层即使在500 K。重要的拓扑阶段证实了拓扑不变量Z(2)和拓扑边状态。AsF单层可以有效地调节双轴拉伸应变和垂直外部电场。吸收近红外和可见的范围预计太阳光谱的AsX (X= H F)单层膜的吸附峰0.45 - -1.6 eV,迷人的光收割。绝缘体AsX (QSH)可能是有前途的候选人实际室温应用程序在dissipationless运输设备和光伏发电。

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