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The mechanism of the modulation of electronic anisotropy in two-dimensional ReS2

机译:调制的电子的机制各向异性的二维它

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Although the anisotropy and strategies for the modulation of the anisotropy in ReS(2)have been widely reported, a comprehensive study on the inherent electronic anisotropy of ReS(2)is still absent to date; therefore, the mechanism of anisotropy evolution is ambiguous as well. In this study, we have conducted a systematic investigation on the evolution of electronic anisotropy in bilayer ReS2, under the modulation of charge doping levels and temperature. It is found that the adjustability of electronic anisotropy is largely attributed to the angle-dependent scattering from defects or vacancies at a low doping level. At a high doping level, in contrast, the inherent electronic anisotropy can be recovered by filling the traps to attenuate the influence of scattering. This work renders insights into the exploration of electronic anisotropy in 2D materials.
机译:尽管的各向异性和策略在ReS(2)调制的各向异性广泛报道,一个全面的研究固有的电子ReS(2)仍然是各向异性没有日期;各向异性进化是模棱两可的。这项研究中,我们进行了一个系统的调查电子的进化各向异性在双层它,在灯下的掺杂水平和温度。发现电子的适应性各向异性是很大程度上归因于从缺陷或angle-dependent散射空置率低掺杂水平。水平,相比之下,固有的电子各向异性可以恢复填充陷阱减弱散射的影响。呈现洞察的探索工作电子在二维各向异性材料。

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