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首页> 外文期刊>ACS applied materials & interfaces >Printable Nanocomposite FeS2-PbS Nanocrystals/Graphene Heterojunction Photodetectors for Broadband Photodetection
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Printable Nanocomposite FeS2-PbS Nanocrystals/Graphene Heterojunction Photodetectors for Broadband Photodetection

机译:可印刷纳米复合物FES2-PBS纳米晶体/石墨烯异质结光电探测器用于宽带光电检修

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摘要

Colloidal nanocrystals are attractive materials for optoelectronics applications because they offer a compelling combination of low-cost solution processing, printability, and spectral tunability through the quantum dot size effect. Here we explore a novel nanocomposite photosensitizer consisting of colloidal nanocrystals of FeS2 and PbS with complementary optical and microstructural properties for broadband photodetection. Using a newly developed ligand exchange to achieve high-efficiency charge transfer across the nanocomposite FeS2-PbS sensitizer and graphene on the FeS2-PbS/graphene photoconductors, an extraordinary photoresponsivity in exceeding similar to 10(6) A/W was obtained in an ultrabroad spectrum of ultraviolet (UV)-visible-near-infrared (NIR). This is in contrast to the nearly 3 orders of magnitude reduction of the photoresponsivity from similar to 10(6) A/W at UV to 10(3) A/W at NIR on their counterpart of FeS2/graphene detectors. This illustrates the combined advantages of the nanocomposite sensitizers and the high charge mobility in FeS2-PbS/graphene van der Waals heterostructures for nanohybrid optoelectronics with high performance, low cost, and scalability for commercialization.
机译:胶体纳米晶体是用于光电子应用的有吸引力的材料,因为它们通过量子点尺寸效应提供了低成本解决方案处理,可印刷性和光谱可调性的令人兴奋的组合。在这里,我们探讨了一种新的纳米复合光敏剂,其由FES2和PBS的胶体纳米晶体组成,具有互补的光学和微观结构的宽带光电检测。使用新开发的配体交换以在FES2-PBS /石墨烯光电导体上通过纳米复合物FES2-PBS敏化剂和石墨烯实现高效电荷转移,在超读中获得超过10(6)A / W的非凡光反应性紫外线(UV)的光谱 - 可变近红外(NIR)。这与在FES2 /石墨烯探测器的对应物上的NIR上的近3个幅度降低光响应性的近3次幅度减小的差约幅度,其光学率与在UV至10(3)A / W处于NIR。这说明了纳米复合敏化剂的组合优势和FES2-PBS /石墨烯VAN DER WALASS的高电荷迁移率,具有高性能,低成本和商业化可扩展性的纳米冬小光电子。

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