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高性能混合磷化铟量子点/黑磷光电探测器

High-Performance Hybrid InP QDs/Black Phosphorus Photodetector.

作者信息

Kwak Do-Hyun, Ramasamy Parthiban, Lee Yang-Soo, Jeong Min-Hye, Lee Jong-Soo

机构信息

Department of Energy Science & Engineering , DGIST , Daegu 42988 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29041-29046. doi: 10.1021/acsami.9b07910. Epub 2019 Jul 31.

Abstract

Zero-dimensional-two-dimensional (0D-2D) hybrid optoelectronic devices have demonstrated high sensitivity and high performance due to the high absorption coefficient of 0D materials with a tunable detection range and a high carrier transport property of 2D materials. However, the reported 0D-2D hybrid devices employ toxic nanomaterials as sensitizing layers, which can limit the practical applications. In this study, we first fabricated the 0D-2D hybrid photodetector using nontoxic InP quantum dots (QDs) as a light-absorbing layer and black phosphorus (BP) as a transport layer. The surface treatment using 1,2-ethanedithiol and thermal treatment were carried out to remove the surface long ligands of colloidal QDs, which can accelerate the charge injection of the photogenerated carriers through the interfaces between InP QDs and BP. The InP QDs/BP hybrid photodetector demonstrates a high responsivity of 1 × 10 A/W and detectivity of 4.5 × 10 Jones at 0.05 μW cm under 405 nm illumination. The results show that 0D-2D hybrid photodetectors based on III-V semiconducting QD materials can be optimized for high-performance photodetectors.

摘要

零维-二维(0D-2D)混合光电器件由于零维材料具有高吸收系数、可调检测范围以及二维材料具有高载流子传输特性,已展现出高灵敏度和高性能。然而,已报道的0D-2D混合器件采用有毒纳米材料作为敏化层,这可能会限制其实际应用。在本研究中,我们首先使用无毒的磷化铟量子点(QDs)作为光吸收层、黑磷(BP)作为传输层制备了0D-2D混合光电探测器。采用1,2-乙二硫醇进行表面处理和热处理以去除胶体量子点的表面长配体,这可以加速光生载流子通过磷化铟量子点与黑磷之间的界面进行电荷注入。在405nm光照下,磷化铟量子点/黑磷混合光电探测器在0.05μW/cm²时展现出1×10 A/W的高响应度和4.5×10 Jones的探测率。结果表明,基于III-V族半导体量子点材料的0D-2D混合光电探测器可优化用于高性能光电探测器。

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