Quasi-Two-Dimensional CsPbBr3 Quantum Dot Superlattice/WS2 Hybrid Photodetector: Self-Assembly Fabrication and Performance Optimization

超晶格 制作 光电探测器 量子点 光电子学 材料科学 自组装 探测器 物理 光学 纳米技术 医学 病理 替代医学
作者
Huanteng Luo,Yiming Zhao,Zhenjun Chen,Ruhong Zhou,Jiabin Li,Zheng Liu,Jie Zhao,Tao Zheng,Wei Gao,Xiao Liu
出处
期刊:ACS Photonics [American Chemical Society]
卷期号:12 (2): 1095-1106 被引量:7
标识
DOI:10.1021/acsphotonics.4c02218
摘要

The field of optoelectronics has witnessed a surge of interest in hybrid structures that combine colloidal quantum dots (QDs) and two-dimensional (2D) materials. These structures are expected to offer a synergistic blend of high responsivity and rapid response times. However, the potential of QD-based photodetectors has been consistently undermined by the limited carrier mobility in QD films, which arises from the inherent disordered QD and ligand packing produced through conventional fabrication methods. It introduces a pioneering approach to address this limitation: the successful growth and lossless transfer of a micrometer-scale mesocrystalline, oriented packed CsPbBr3 QD superlattice (SL) onto 2D WS2. The effective coupling within these SLs endows them with quasi-2D material characteristics and, when integrated with the intrinsic 2D properties of WS2, results in a photodetector with exceptional performance. Under 405 nm illumination, it demonstrates a remarkable responsivity of 91.24 A/W, a specific detectivity of 1.15 × 1011 Jones, and swift response times of 160 μs/380 μs. These performance metrics exceed those of disordered CsPbBr3 QDs/WS2 photodetector prepared by spin-coating, underscoring the superior optoelectronic properties of the SL/WS2 hybrid structure. This breakthrough not only contributes to the design of high-performance photodetectors but also facilitates transformative progress in the field of optoelectronic technologies.
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