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Trap-free exciton dynamics in monolayer WS2via oleic acid passivation

机译:在单层WS2via Trap-free激子动力学油酸钝化

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Two-dimensional transition metal dichalcogenides have attracted a great deal of attention in the past few decades owing to their attractive optoelectronic properties. However, their widespread utility in photonic devices and components is still limited owing to their weak photoluminescence. While various treating methods are in place to improve the photoluminescence yield, the impact of these treatments on the excited state (especially exciton) dynamics in these two-dimensional materials remains ill defined. In this work, exciton dynamics in pristine and oleic acid-treated monolayer WS2 were comprehensively studied through various ultrafast experimental techniques. We demonstrate that oleic acid effectively passivates the defect states in as-fabricated WS2, resulting in trap-free exciton dynamics and exciton annihilation rate reduction, which leads to stronger steady-state photoluminescence and longer photoluminescence lifetime. These results provide valuable information on the intrinsic exciton dynamics in monolayer WS2, which could also be applicable in other two-dimensional transition metal dichalcogenides and help improve optoelectronic device performance.
机译:二维过渡金属dichalcogenides吸引了大量的注意力在近几十年来由于他们的吸引力光电性质。广泛的光子设备和工具组件仍是有限的由于他们的虚弱光致发光。来改善光致发光吗收益,这些治疗方法的影响激发态(特别是激子)动力学这些二维材料仍然是生病了定义的。二硫化钨原始和油的酸洗单层全面研究了通过不同吗超快的实验技术。油酸有效钝化缺陷州二硫化钨纯属捏造,导致trap-free激子动力学和激子湮没率降低,从而导致较强的稳态光致发光和光致发光寿命更长。提供有价值的内在信息在单层WS2激子动力学,可以也适用于其他二维过渡金属dichalcogenides和帮助改善光电设备的性能。

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