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首页> 外文期刊>Nanotechnology >Synthesis of vertically-aligned large-area MoS2 nanofilm and its application in MoS2/Si heterostructure photodetector
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Synthesis of vertically-aligned large-area MoS2 nanofilm and its application in MoS2/Si heterostructure photodetector

机译:垂直取向大面积MoS2纳米薄膜的合成及其在MoS2/Si异质结构光电探测器中的应用

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Van der Waals heterostructures based on the combination of 2D transition metal dichalcogenides and conventional semiconductors offer new opportunities for the next generation of optoelectronics. In this work, the sulfurization of Mo film is used to synthesize vertically-aligned MoS2 nanofilm (V-MoS2) with wafer-size and layer controllability. The V-MoS2/n-Si heterojunction was fabricated by using a 20 nm thickness V-MoS2, and the self-powered broadband photodetectors covering from deep ultraviolet to near infrared is achieved. The device shows superior responsivity (5.06 mA W-1), good photodetectivity (5.36 x 10(11) Jones) and high on/off ratio I (on)/I (off) (8.31 x 10(3) at 254 nm). Furthermore, the V-MoS2/n-Si heterojunction device presents a fast response speed with the rise time and fall time being 54.53 ms and 97.83 ms, respectively. The high photoelectric performances could be attributed to the high-quality heterojunction between the V-MoS2 and n-Si. These findings suggest that the V-MoS2/n-Si heterojunction has great potential applications in the deep ultraviolet-near infrared detection field, and might be used as a part of the construction of integrated optoelectronic systems.
机译:基于二维过渡金属硫族化合物和传统半导体组合的范德华异质结构为下一代光电子学提供了新的机会。本工作利用钼薄膜的硫化合成了具有晶圆尺寸和层可控性的垂直取向二硫化钼纳米薄膜(V-MoS2)。采用20 nm厚度的V-MoS2制备了V-MoS2/n-Si异质结,实现了从深紫外到近红外的自供电宽带光电探测器。该器件具有出色的响应度 (5.06 mA W-1)、良好的光探测性 (5.36 x 10(11) Jones) 和高开/关比 I (on)/I(off) (254 nm 时为 8.31 x 10(3))。此外,V-MoS2/n-Si异质结器件具有较快的响应速度,上升时间和下降时间分别为54.53 ms和97.83 ms。高光电性能可归因于V-MoS2和n-Si之间的高质量异质结。这些结果表明,V-MoS2/n-Si异质结在深紫外-近红外探测领域具有巨大的应用潜力,可作为集成光电系统构建的一部分。

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