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Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector

Photodetector based on two‐dimensional (2D) materials is an ongoing quest in optoelectronics. 2D photodetectors are generally efficient at low illuminating power but suffer severe recombination processes at high power, which results in the sublinear power‐dependent photoresponse and lower optoelectr...

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Autores principales: Meng, Xianghao, Du, Yuhan, Wu, Wenbin, Joseph, Nesta Benno, Deng, Xing, Wang, Jinjin, Ma, Jianwen, Shi, Zeping, Liu, Binglin, Ma, Yuanji, Yue, Fangyu, Zhong, Ni, Xiang, Ping‐Hua, Zhang, Cheng, Duan, Chun‐Gang, Narayan, Awadhesh, Sun, Zhenrong, Chu, Junhao, Yuan, Xiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10369293/
https://www.ncbi.nlm.nih.gov/pubmed/37116118
http://dx.doi.org/10.1002/advs.202300413
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author Meng, Xianghao
Du, Yuhan
Wu, Wenbin
Joseph, Nesta Benno
Deng, Xing
Wang, Jinjin
Ma, Jianwen
Shi, Zeping
Liu, Binglin
Ma, Yuanji
Yue, Fangyu
Zhong, Ni
Xiang, Ping‐Hua
Zhang, Cheng
Duan, Chun‐Gang
Narayan, Awadhesh
Sun, Zhenrong
Chu, Junhao
Yuan, Xiang
author_facet Meng, Xianghao
Du, Yuhan
Wu, Wenbin
Joseph, Nesta Benno
Deng, Xing
Wang, Jinjin
Ma, Jianwen
Shi, Zeping
Liu, Binglin
Ma, Yuanji
Yue, Fangyu
Zhong, Ni
Xiang, Ping‐Hua
Zhang, Cheng
Duan, Chun‐Gang
Narayan, Awadhesh
Sun, Zhenrong
Chu, Junhao
Yuan, Xiang
author_sort Meng, Xianghao
collection PubMed
description Photodetector based on two‐dimensional (2D) materials is an ongoing quest in optoelectronics. 2D photodetectors are generally efficient at low illuminating power but suffer severe recombination processes at high power, which results in the sublinear power‐dependent photoresponse and lower optoelectronic efficiency. The desirable superlinear photocurrent is mostly achieved by sophisticated 2D heterostructures or device arrays, while 2D materials rarely show intrinsic superlinear photoresponse. This work reports the giant superlinear power dependence of photocurrent based on multilayer Ta(2)NiS(5). While the fabricated photodetector exhibits good sensitivity (3.1 mS W(−1)per □) and fast photoresponse (31 µs), the bias‐, polarization‐, and spatial‐resolved measurements point to an intrinsic photoconductive mechanism. By increasing the incident power density from 1.5 to 200 µW µm(−2), the photocurrent power dependence varies from sublinear to superlinear. At higher illuminating conditions, prominent superlinearity is observed with a giant power exponent of γ = 1.5. The unusual photoresponse can be explained by a two‐recombination‐center model where density of states of the recombination centers (RC) effectively closes all recombination channels. The photodetector is integrated into camera for taking photos with enhanced contrast due to superlinearity. This work provides an effective route to enable higher optoelectronic efficiency at extreme conditions.
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spelling pubmed-103692932023-07-27 Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector Meng, Xianghao Du, Yuhan Wu, Wenbin Joseph, Nesta Benno Deng, Xing Wang, Jinjin Ma, Jianwen Shi, Zeping Liu, Binglin Ma, Yuanji Yue, Fangyu Zhong, Ni Xiang, Ping‐Hua Zhang, Cheng Duan, Chun‐Gang Narayan, Awadhesh Sun, Zhenrong Chu, Junhao Yuan, Xiang Adv Sci (Weinh) Research Articles Photodetector based on two‐dimensional (2D) materials is an ongoing quest in optoelectronics. 2D photodetectors are generally efficient at low illuminating power but suffer severe recombination processes at high power, which results in the sublinear power‐dependent photoresponse and lower optoelectronic efficiency. The desirable superlinear photocurrent is mostly achieved by sophisticated 2D heterostructures or device arrays, while 2D materials rarely show intrinsic superlinear photoresponse. This work reports the giant superlinear power dependence of photocurrent based on multilayer Ta(2)NiS(5). While the fabricated photodetector exhibits good sensitivity (3.1 mS W(−1)per □) and fast photoresponse (31 µs), the bias‐, polarization‐, and spatial‐resolved measurements point to an intrinsic photoconductive mechanism. By increasing the incident power density from 1.5 to 200 µW µm(−2), the photocurrent power dependence varies from sublinear to superlinear. At higher illuminating conditions, prominent superlinearity is observed with a giant power exponent of γ = 1.5. The unusual photoresponse can be explained by a two‐recombination‐center model where density of states of the recombination centers (RC) effectively closes all recombination channels. The photodetector is integrated into camera for taking photos with enhanced contrast due to superlinearity. This work provides an effective route to enable higher optoelectronic efficiency at extreme conditions. John Wiley and Sons Inc. 2023-04-28 /pmc/articles/PMC10369293/ /pubmed/37116118 http://dx.doi.org/10.1002/advs.202300413 Text en © 2023 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Meng, Xianghao
Du, Yuhan
Wu, Wenbin
Joseph, Nesta Benno
Deng, Xing
Wang, Jinjin
Ma, Jianwen
Shi, Zeping
Liu, Binglin
Ma, Yuanji
Yue, Fangyu
Zhong, Ni
Xiang, Ping‐Hua
Zhang, Cheng
Duan, Chun‐Gang
Narayan, Awadhesh
Sun, Zhenrong
Chu, Junhao
Yuan, Xiang
Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector
title Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector
title_full Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector
title_fullStr Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector
title_full_unstemmed Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector
title_short Giant Superlinear Power Dependence of Photocurrent Based on Layered Ta(2)NiS(5) Photodetector
title_sort giant superlinear power dependence of photocurrent based on layered ta(2)nis(5) photodetector
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10369293/
https://www.ncbi.nlm.nih.gov/pubmed/37116118
http://dx.doi.org/10.1002/advs.202300413
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