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Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots

[Image: see text] Efficient and simple-to-fabricate light detectors in the mid infrared (MIR) spectral range are of great importance for various applications in existing and emerging technologies. Here, we demonstrate compact and efficient photodetectors operating at room temperature in a wavelength...

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Autores principales: Schwanninger, Raphael, Koepfli, Stefan M., Yarema, Olesya, Dorodnyy, Alexander, Yarema, Maksym, Moser, Annina, Nashashibi, Shadi, Fedoryshyn, Yuriy, Wood, Vanessa, Leuthold, Juerg
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9982815/
https://www.ncbi.nlm.nih.gov/pubmed/36795914
http://dx.doi.org/10.1021/acsami.2c23050
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author Schwanninger, Raphael
Koepfli, Stefan M.
Yarema, Olesya
Dorodnyy, Alexander
Yarema, Maksym
Moser, Annina
Nashashibi, Shadi
Fedoryshyn, Yuriy
Wood, Vanessa
Leuthold, Juerg
author_facet Schwanninger, Raphael
Koepfli, Stefan M.
Yarema, Olesya
Dorodnyy, Alexander
Yarema, Maksym
Moser, Annina
Nashashibi, Shadi
Fedoryshyn, Yuriy
Wood, Vanessa
Leuthold, Juerg
author_sort Schwanninger, Raphael
collection PubMed
description [Image: see text] Efficient and simple-to-fabricate light detectors in the mid infrared (MIR) spectral range are of great importance for various applications in existing and emerging technologies. Here, we demonstrate compact and efficient photodetectors operating at room temperature in a wavelength range of 2710–4250 nm with responsivities as high as 375 and 4 A/W. Key to the high performance is the combination of a sintered colloidal quantum dot (CQD) lead selenide (PbSe) and lead sulfide (PbS) heterojunction photoconductor with a metallic metasurface perfect absorber. The combination of this photoconductor stack with the metallic metasurface perfect absorber provides an overall ∼20-fold increase of the responsivity compared against reference sintered PbSe photoconductors. More precisely, the introduction of a PbSe/PbS heterojunction increases the responsivity by a factor of ∼2 and the metallic metasurface enhances the responsivity by an order of magnitude. The metasurface not only enhances the light–matter interaction but also acts as an electrode to the detector. Furthermore, fabrication of our devices relies on simple and inexpensive methods. This is in contrast to most of the currently available (state-of-the-art) MIR photodetectors that rely on rather expensive as well as nontrivial fabrication technologies that often require cooling for efficient operation.
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spelling pubmed-99828152023-03-04 Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots Schwanninger, Raphael Koepfli, Stefan M. Yarema, Olesya Dorodnyy, Alexander Yarema, Maksym Moser, Annina Nashashibi, Shadi Fedoryshyn, Yuriy Wood, Vanessa Leuthold, Juerg ACS Appl Mater Interfaces [Image: see text] Efficient and simple-to-fabricate light detectors in the mid infrared (MIR) spectral range are of great importance for various applications in existing and emerging technologies. Here, we demonstrate compact and efficient photodetectors operating at room temperature in a wavelength range of 2710–4250 nm with responsivities as high as 375 and 4 A/W. Key to the high performance is the combination of a sintered colloidal quantum dot (CQD) lead selenide (PbSe) and lead sulfide (PbS) heterojunction photoconductor with a metallic metasurface perfect absorber. The combination of this photoconductor stack with the metallic metasurface perfect absorber provides an overall ∼20-fold increase of the responsivity compared against reference sintered PbSe photoconductors. More precisely, the introduction of a PbSe/PbS heterojunction increases the responsivity by a factor of ∼2 and the metallic metasurface enhances the responsivity by an order of magnitude. The metasurface not only enhances the light–matter interaction but also acts as an electrode to the detector. Furthermore, fabrication of our devices relies on simple and inexpensive methods. This is in contrast to most of the currently available (state-of-the-art) MIR photodetectors that rely on rather expensive as well as nontrivial fabrication technologies that often require cooling for efficient operation. American Chemical Society 2023-02-16 /pmc/articles/PMC9982815/ /pubmed/36795914 http://dx.doi.org/10.1021/acsami.2c23050 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Schwanninger, Raphael
Koepfli, Stefan M.
Yarema, Olesya
Dorodnyy, Alexander
Yarema, Maksym
Moser, Annina
Nashashibi, Shadi
Fedoryshyn, Yuriy
Wood, Vanessa
Leuthold, Juerg
Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots
title Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots
title_full Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots
title_fullStr Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots
title_full_unstemmed Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots
title_short Highly Responsive Mid-Infrared Metamaterial Enhanced Heterostructure Photodetector Formed out of Sintered PbSe/PbS Colloidal Quantum Dots
title_sort highly responsive mid-infrared metamaterial enhanced heterostructure photodetector formed out of sintered pbse/pbs colloidal quantum dots
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9982815/
https://www.ncbi.nlm.nih.gov/pubmed/36795914
http://dx.doi.org/10.1021/acsami.2c23050
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