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首页> 外文期刊>Nano letters >Enhanced Light Emission from Large-Area Monolayer MoS2 Using Plasmonic Nanodisc Arrays
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Enhanced Light Emission from Large-Area Monolayer MoS2 Using Plasmonic Nanodisc Arrays

机译:使用等离子体纳米盘阵列增强了大面积单层MoS2的发光。

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摘要

Single-layer direct band gap semiconductors such as transition metal dichalcogenides are quite attractive for a wide range of electronics, photonics, and optoelectronics applications. Their monolayer thickness provides significant advantages in many applications such as field-effect transistors for high-performance electronics, sensor/detector applications, and flexible electronics. However, for optoelectronics and photonics applications, inherent monolayer thickness poses a significant challenge for the interaction of light with the material, which therefore results in poor light emission and absorption behavior. Here, we demonstrate enhanced light emission from large-area monolayer MoS2 using plasmonic silver nanodisc arrays, where enhanced photoluminescence up to 12-times has been measured. Observed phenomena stem from the fact that plasmonic resonance couples to both excitation and emission fields and thus boosts the lightmatter interaction at the nanoscale. Reported results allow us to engineer lightmatter interactions in two-dimensional materials and could enable highly efficient photodetectors, sensors, and photovoltaic devices, where photon absorption and emission efficiency highly dictate the device performance.
机译:单层直接带隙半导体(例如过渡金属二卤化半导体)对于广泛的电子,光子和光电应用非常有吸引力。它们的单层厚度在许多应用中都具有显着的优势,例如用于高性能电子设备,传感器/检测器应用和柔性电子设备的场效应晶体管。然而,对于光电子学和光子学应用,固有的单层厚度对光与材料的相互作用提出了重大挑战,因此导致不良的发光和吸收行为。在这里,我们展示了使用等离激元银纳米光盘阵列从大面积单层MoS2发出的增强的光,其中已测量到高达12倍的增强的光致发光。观察到的现象源于等离子共振耦合到激发场和发射场的事实,从而促进了纳米级的光物质相互作用。报告的结果使我们能够设计二维材料中的光物质相互作用,并可以实现高效的光电探测器,传感器和光电器件,其中光子的吸收和发射效率在很大程度上决定了器件的性能。

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