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Band offsets engineering in asymmetric Janus bilayer transition-metal dichalcogenides

机译:BAND OFFSET在不对称Janus Bilayer过渡金属二硫代根的工程

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Using the first-principles calculation, we systematically studied the electronic properties of the bilayer transition metal dichalcogenides (TMDs) MX2 (M = Mo, W; X = S, Se, Te) with replacing one, two, three or four layers of X atoms as Y atoms (X not equal Y = S, Se, Te). By comparison, it is found that when the inner two layers of chalcogenide atoms are different, the system has both valence band offset (VBO) and conduction band offset (CBO). Among them, values of the band offsets reach maxima when the inner one layer of X atoms is replaced by Y atoms, namely forming the asymmetric Janus bilayer XMX/YMX. We take SMoS/SeMoS as an example to analyze the formation of the band offsets and the improvement of optoelectronic properties. Importantly, it is also found that both external electric field and biaxial strain can regulate electronic structures of asymmetric Janus bilayer TMDs with noticeable modulation of the values of band offsets. When the external electric field changes from negative to positive continually, CBO decreases and VBO increases. While when the biaxial strain changes from compression to stretch continually, CBO increases and VBO decreases. These findings enrich the study of bilayer TMDs that can be used as optoelectronic, nanoelectronic and valleytronic devices.
机译:使用第一原理计算,我们系统地研究了双层过渡金属二甲基甲基(TMDS)MX2(M = Mo,W; x = S,SE,TE)的电子性质,用替换一个,两个,三个或四层x原子作为Y原子(x不等于y = s,se,te)。相比之下,发现当内部两层的硫属化物原子不同时,该系统具有价带偏移(VBO)和导带偏移(CBO)。其中,当由Y原子代替内部一层X原子时,带偏移的值达到最大值,即形成不对称Janus双层XMx / YMX。我们采取SMOS / SEMOS作为分析频段偏移的形成和光电性质的改进。重要的是,还发现,外部电场和双轴应变都可以调节不对称Janus双层TMD的电子结构,以显着调制带偏移的值的值。当外部电场不断地从负数变为正,CBO减少并且VBO增加。虽然当双轴应变从压缩变化时,连续地,CBO增加和VBO减少。这些调查结果丰富了双层TMDS的研究,可用作光电,纳米电子和谷座器件。

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