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Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate

High-performance photodetectors hold promising potential in optical communication and imaging systems. However, conventional counterparts are suffering narrow detection range, high power consumption, and poor polarization sensitivity. Characteristics originating from switchable polarization in ferro...

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Autores principales: He, Zhigang, Guan, Heyuan, Liang, Xijie, Chen, Junteng, Xie, Manyan, Luo, Kaiwen, An, Ran, Ma, Liang, Ma, Fengkai, Yang, Tiefeng, Lu, Huihui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10357351/
https://www.ncbi.nlm.nih.gov/pubmed/37484499
http://dx.doi.org/10.34133/research.0199
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author He, Zhigang
Guan, Heyuan
Liang, Xijie
Chen, Junteng
Xie, Manyan
Luo, Kaiwen
An, Ran
Ma, Liang
Ma, Fengkai
Yang, Tiefeng
Lu, Huihui
author_facet He, Zhigang
Guan, Heyuan
Liang, Xijie
Chen, Junteng
Xie, Manyan
Luo, Kaiwen
An, Ran
Ma, Liang
Ma, Fengkai
Yang, Tiefeng
Lu, Huihui
author_sort He, Zhigang
collection PubMed
description High-performance photodetectors hold promising potential in optical communication and imaging systems. However, conventional counterparts are suffering narrow detection range, high power consumption, and poor polarization sensitivity. Characteristics originating from switchable polarization in ferroelectrics can be used to optimize the photo-to-electric procedure and improve the photodetection performance. In this regard, we constructed a configuration by integrating 2-dimensional molybdenum disulfide (MoS(2)) with ferroelectric lithium niobate (LiNbO(3)), resulting in the MoS(2)/LiNbO(3) heterostructured photodetector. Benefiting from the pyroelectric effect of LiNbO(3), the limitation of bandgap on the detection range can be broken, thus broadening the response band of the detector to 365 to 1,064 nm, as well as enabling the self-powered characteristic. Meanwhile, high carrier mobility and decent light absorbance of MoS(2) introduce robust light-matter interactions with the underlying LiNbO(3), leading to ultrafast rise/fall times of ≈150 μs/250 μs and switching ratios of up to ≈190. Moreover, the highest responsivity, specific detectivity, and external quantum efficiency achieved were 17.3 A·W(−1), 4.3 × 10(11) Jones, and 4,645.78%, respectively. Furthermore, because of the anisotropy of the spontaneous-polarized LiNbO(3) substrate, the photocurrent of the device achieved a dichroic ratio of 7.42, comparing favorably to most MoS(2)-based photodetectors. This work demonstrates the integration potential between ferroelectric LiNbO(3) and 2-dimensional materials for high-performance photodetection.
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spelling pubmed-103573512023-07-21 Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate He, Zhigang Guan, Heyuan Liang, Xijie Chen, Junteng Xie, Manyan Luo, Kaiwen An, Ran Ma, Liang Ma, Fengkai Yang, Tiefeng Lu, Huihui Research (Wash D C) Research Article High-performance photodetectors hold promising potential in optical communication and imaging systems. However, conventional counterparts are suffering narrow detection range, high power consumption, and poor polarization sensitivity. Characteristics originating from switchable polarization in ferroelectrics can be used to optimize the photo-to-electric procedure and improve the photodetection performance. In this regard, we constructed a configuration by integrating 2-dimensional molybdenum disulfide (MoS(2)) with ferroelectric lithium niobate (LiNbO(3)), resulting in the MoS(2)/LiNbO(3) heterostructured photodetector. Benefiting from the pyroelectric effect of LiNbO(3), the limitation of bandgap on the detection range can be broken, thus broadening the response band of the detector to 365 to 1,064 nm, as well as enabling the self-powered characteristic. Meanwhile, high carrier mobility and decent light absorbance of MoS(2) introduce robust light-matter interactions with the underlying LiNbO(3), leading to ultrafast rise/fall times of ≈150 μs/250 μs and switching ratios of up to ≈190. Moreover, the highest responsivity, specific detectivity, and external quantum efficiency achieved were 17.3 A·W(−1), 4.3 × 10(11) Jones, and 4,645.78%, respectively. Furthermore, because of the anisotropy of the spontaneous-polarized LiNbO(3) substrate, the photocurrent of the device achieved a dichroic ratio of 7.42, comparing favorably to most MoS(2)-based photodetectors. This work demonstrates the integration potential between ferroelectric LiNbO(3) and 2-dimensional materials for high-performance photodetection. AAAS 2023-07-20 /pmc/articles/PMC10357351/ /pubmed/37484499 http://dx.doi.org/10.34133/research.0199 Text en Copyright © 2023 Zhigang He et al. https://creativecommons.org/licenses/by/4.0/Exclusive licensee Science and Technology Review Publishing House. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
He, Zhigang
Guan, Heyuan
Liang, Xijie
Chen, Junteng
Xie, Manyan
Luo, Kaiwen
An, Ran
Ma, Liang
Ma, Fengkai
Yang, Tiefeng
Lu, Huihui
Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate
title Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate
title_full Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate
title_fullStr Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate
title_full_unstemmed Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate
title_short Broadband, Polarization-Sensitive, and Self-Powered High-Performance Photodetection of Hetero-Integrated MoS(2) on Lithium Niobate
title_sort broadband, polarization-sensitive, and self-powered high-performance photodetection of hetero-integrated mos(2) on lithium niobate
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10357351/
https://www.ncbi.nlm.nih.gov/pubmed/37484499
http://dx.doi.org/10.34133/research.0199
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