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Controlled Sulfurization Process for the Synthesis of Large Area MoS2 Films and MoS2/WS2 Heterostructures

机译:受控硫化工艺合成大面积MoS2薄膜和MoS2 / WS2异质结构

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摘要

Large area MoS2 films with tunable physical-chemical properties are grown on dielectric substrates by annealing of ultrathin Mo layers in the presence of a sulfur-containing gaseous precursor. Different growth conditions are found to have a significant impact on material properties, including chemical composition, roughness, and grain sizes, thus shedding light on critical parameters that govern sulfurization processes for the synthesis of large area 2D transition metal dichalcogenides. Optimized growth conditions in combination with the use of single crystal sapphire substrates with atomically flat interface result in the formation of oriented MoS2 films with improved quality and electrical performance. On the basis of this versatile synthesis technique, an original double-step process is presented for the synthesis of WS2/MoS2 vertical heterostructures. Good uniformity of layers over large area has enabled first isolation of defects by electron spin resonance spectroscopy with densities correlated with mobility degradation and the first experimental characterization of the band alignment at the interfaces of MoS2, WS2, and their vertical stacks with the underlying SiO2 insulator.
机译:在含硫气体前体的存在下,通过对超薄Mo层进行退火,可以在介电基板上生长具有可调节物理化学性质的大面积MoS2膜。发现不同的生长条件对材料性能(包括化学成分,粗糙度和晶粒尺寸)有重大影响,因此可以阐明控制用于合成大面积2D过渡金属二卤化金属的硫化过程的关键参数。优化的生长条件,结合使用具有原子平面界面的单晶蓝宝石衬底,可形成具有改进质量和电性能的取向MoS2薄膜。基于这种通用的合成技术,提出了用于合成WS2 / MoS2垂直异质结构的原始双步工艺。大面积区域上良好的均匀性使得能够通过电子自旋共振光谱法对缺陷进行首次隔离,其密度与迁移率降低相关,并且在MoS2,WS2及其垂直叠层与下面的SiO2绝缘体的界面处具有能带取向的首次实验表征。

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