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Hybrid structure of PbS QDs and vertically-few-layer MoS 2 nanosheets array for broadband photodetector
A novel three-dimensional (3D) vertically-few-layer MoS (V-MoS ) nanosheets- zero-dimensional PbS quantum dots (QDs) hybrid structure based broadband photodetector was fabricated, and its photoelectric performance was investigated in detail. We synthesized the V-MoS nanosheets by chemical vapor depo...
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Published in: | Nanotechnology 2021-04, Vol.32 (14), p.145602 |
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Main Authors: | , , , , , , , , |
Format: | Article |
Language: | English |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | A novel three-dimensional (3D) vertically-few-layer MoS
(V-MoS
) nanosheets- zero-dimensional PbS quantum dots (QDs) hybrid structure based broadband photodetector was fabricated, and its photoelectric performance was investigated in detail. We synthesized the V-MoS
nanosheets by chemical vapor deposition, using the TiO
layer as the induced layer, and proposed a possible growth mechanism. The use of the TiO
induction layer successfully changed the growth direction of MoS
from parallel to vertical. The prepared V-MoS
nanosheets have a large specific surface area, abundantly exposed edges and excellent light absorption capacity. The V-MoS
nanosheets detector was then fabricated and investigated, which exhibits a high sensitivity for 635 nm light, a fast response time and an excellent photoelectric response. The V-MoS
nanosheets with a height of approximately 1 μm successfully broke the light absorption limit caused by the atomic thickness. Finally, we fabricated the PbS QDs/V-MoS
nanosheets hybrid detector and demonstrated their potential for high-performance broadband photodetectors. The response wavelength of the hybrid detector extends from the visible band to the near-infrared band. The responsivity of the hybrid detector reaches 1.46 A W
under 1450 nm illumination. The combination of 3D MoS
nanosheets and QDs further improves the performance of MoS
-based photodetector devices. We believe that the proposed zero-dimensional QDs and 3D vertical nanosheets hybrid structure broadband photodetector provides a promising way for the next-generation optoelectronic devices. |
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ISSN: | 0957-4484 1361-6528 |
DOI: | 10.1088/1361-6528/abd57f |