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Bright monolayer tungsten disulfide via exciton and trion chemical modulations

机译:明亮的单层二硫化钨通过激子和揣恩化学调节

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摘要

Atomically thin transition metal dichalcogenides (TMDCs) with exceptional electrical and optical properties have drawn tremendous attention for use in novel optoelectronic applications as photodetectors, transistors, light emitters, etc. However, electron bound trions formed through the combination of neutral excitons and electrons significantly decrease the photoluminescence (PL) efficiency of TMDCs. In this study, we report a simple yet efficient chemical doping strategy to modulate the optical properties of monolayer tungsten disulfide (WS2). As a demonstrative example, a chemically doped monolayer of WS2 exhibits remarkable PL enhancement of about one order of magnitude higher than that of pristine WS2. This outstanding PL enhancement is attributed to the fact that excess electrons, which promote the formation of electron-bound trions, are reduced in number through charge transfer from WS2 to the chemical dopant. Furthermore, an improved degree of circular polarization from similar to 9.0 to similar to 41.5 was also observed in the chemically doped WS2 monolayer. This work describes a feasible strategy to manipulate the optical properties of TMDCs via exciton modulation, making TMDCs promising candidates for versatile semiconductor-based photonic devices.
机译:过渡金属dichalcogenides自动薄(TMDCs)特殊电气和光学性质引起了巨大的关注在新颖的光电应用程序使用光电探测器、晶体管、光发射器等。然而,电子束缚揣恩通过形成的中性的激子和电子显著降低光致发光(PL)TMDCs效率。简单而有效的化学掺杂策略调节单层的光学特性二硫化钨(WS2)。例子,一个化学掺杂二硫化钨单层的展品的PL增强有关数量级高于原始二硫化钨。归因于这样一个事实:多余的电子,促进形成electron-bound吗揣恩,通过电荷数量减少从二硫化钨转移到化学掺杂剂。此外,一种改进的循环从类似于9.0%,类似于极化化学掺杂41.5%也观察到二硫化钨单层。策略操作的光学特性通过激子TMDCs调制,使得TMDCs有前途的候选人的是从汤姆斯光子设备。

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