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Electric-field-induced strong enhancement of electroluminescence in multilayer molybdenum disulfide

机译:电场诱导多层二硫化钼中电致发光的增强

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摘要

The layered transition metal dichalcogenides have attracted considerable interest for their unique electronic and optical properties. While the monolayer MoS2 exhibits a direct bandgap, the multilayer MoS2 is an indirect bandgap semiconductor and generally optically inactive. Here we report electric-field-induced strong electroluminescence in multilayer MoS2. We show that GaN–Al2O3–MoS2 and GaN–Al2O3–MoS2–Al2O3-graphene vertical heterojunctions can be created with excellent rectification behaviour. Electroluminescence studies demonstrate prominent direct bandgap excitonic emission in multilayer MoS2 over the entire vertical junction area. Importantly, the electroluminescence efficiency observed in multilayer MoS2 is comparable to or higher than that in monolayers. This strong electroluminescence can be attributed to electric-field-induced carrier redistribution from the lowest energy points (indirect bandgap) to higher energy points (direct bandgap) in k-space. The electric-field-induced electroluminescence is general for other layered materials including WSe2 and can open up a new pathway towards transition metal dichalcogenide-based optoelectronic devices.
机译:层状过渡金属二卤化物因其独特的电子和光学性能而引起了人们的极大兴趣。尽管单层MoS2表现出直接带隙,但多层MoS2是间接带隙半导体,通常不具有光学活性。在这里,我们报告多层MoS2中的电场诱导的强电致发光。我们表明,GaN-Al2O3-MoS2和GaN-Al2O3-MoS2-Al2O3-石墨烯垂直异质结可以产生出色的整流性能。电致发光研究表明,在整个垂直结区上的多层MoS2中,显着的直接带隙激子发射。重要的是,在多层MoS2中观察到的电致发光效率与单层相当或更高。这种强电致发光可归因于电场引起的载流子从k空间中最低能量点(间接带隙)到较高能量点(直接带隙)的重新分布。电场诱导的电致发光对于包括WSe2在内的其他层状材料是通用的,并且可以为过渡金属二卤化硅基光电器件开辟新的途径。

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