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Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors

Photodetectors are essential elements for various applications like fiber optic communication systems, biomedical imaging, and so on. Thus, improving the performance and reducing the material costs of photodetectors would act as a motivation toward the future advancement of those applications. This...

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Autores principales: Nguyen, Nhat Minh, Ngo, Duc Anh, Thu Nguyen, Le Ngoc, Luong, Hoai Nhan, Duy Huynh, Ha Ngoc, Man Nguyen, Bui Gia, Doan, Nhat Giang, Duy, Le Thai, Tran, Anh Vy, Tran, Cong Khanh, Pham, Kim Ngoc, Dang, Vinh Quang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10354500/
https://www.ncbi.nlm.nih.gov/pubmed/37476039
http://dx.doi.org/10.1039/d3ra03485b
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author Nguyen, Nhat Minh
Ngo, Duc Anh
Thu Nguyen, Le Ngoc
Luong, Hoai Nhan
Duy Huynh, Ha Ngoc
Man Nguyen, Bui Gia
Doan, Nhat Giang
Duy, Le Thai
Tran, Anh Vy
Tran, Cong Khanh
Pham, Kim Ngoc
Dang, Vinh Quang
author_facet Nguyen, Nhat Minh
Ngo, Duc Anh
Thu Nguyen, Le Ngoc
Luong, Hoai Nhan
Duy Huynh, Ha Ngoc
Man Nguyen, Bui Gia
Doan, Nhat Giang
Duy, Le Thai
Tran, Anh Vy
Tran, Cong Khanh
Pham, Kim Ngoc
Dang, Vinh Quang
author_sort Nguyen, Nhat Minh
collection PubMed
description Photodetectors are essential elements for various applications like fiber optic communication systems, biomedical imaging, and so on. Thus, improving the performance and reducing the material costs of photodetectors would act as a motivation toward the future advancement of those applications. This study introduces the development of a nanohybrid of zinc oxide nanorods (ZnONRs) and multi-shaped silver nanoparticles MAgNPs through a simple solution process; in which ZnONRs are hybridized with MAgNPs to enable visible absorption through the surface plasmon resonance (SPR) effect. The photodetector based on ZnONRs/MAgNPs is responsive to visible light with representative wavelengths of 395, 464, 532 and 640 nm, and it exhibits high responsivity (R), photoconductive gain (G) and detectivity (D). The maximum R is calculated from the fitting curve of the responsivity-power relation with the value of 5.35 × 10(3) (mA W(−1)) at 395 nm excitation. The highest G and D reach 8.984 and 3.71 × 10(10) Jones at that wavelength. This reveals the promise of our innovative broadband photodetector for practical usage.
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spelling pubmed-103545002023-07-20 Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors Nguyen, Nhat Minh Ngo, Duc Anh Thu Nguyen, Le Ngoc Luong, Hoai Nhan Duy Huynh, Ha Ngoc Man Nguyen, Bui Gia Doan, Nhat Giang Duy, Le Thai Tran, Anh Vy Tran, Cong Khanh Pham, Kim Ngoc Dang, Vinh Quang RSC Adv Chemistry Photodetectors are essential elements for various applications like fiber optic communication systems, biomedical imaging, and so on. Thus, improving the performance and reducing the material costs of photodetectors would act as a motivation toward the future advancement of those applications. This study introduces the development of a nanohybrid of zinc oxide nanorods (ZnONRs) and multi-shaped silver nanoparticles MAgNPs through a simple solution process; in which ZnONRs are hybridized with MAgNPs to enable visible absorption through the surface plasmon resonance (SPR) effect. The photodetector based on ZnONRs/MAgNPs is responsive to visible light with representative wavelengths of 395, 464, 532 and 640 nm, and it exhibits high responsivity (R), photoconductive gain (G) and detectivity (D). The maximum R is calculated from the fitting curve of the responsivity-power relation with the value of 5.35 × 10(3) (mA W(−1)) at 395 nm excitation. The highest G and D reach 8.984 and 3.71 × 10(10) Jones at that wavelength. This reveals the promise of our innovative broadband photodetector for practical usage. The Royal Society of Chemistry 2023-07-19 /pmc/articles/PMC10354500/ /pubmed/37476039 http://dx.doi.org/10.1039/d3ra03485b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Nguyen, Nhat Minh
Ngo, Duc Anh
Thu Nguyen, Le Ngoc
Luong, Hoai Nhan
Duy Huynh, Ha Ngoc
Man Nguyen, Bui Gia
Doan, Nhat Giang
Duy, Le Thai
Tran, Anh Vy
Tran, Cong Khanh
Pham, Kim Ngoc
Dang, Vinh Quang
Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors
title Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors
title_full Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors
title_fullStr Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors
title_full_unstemmed Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors
title_short Developing low-cost nanohybrids of ZnO nanorods and multi-shaped silver nanoparticles for broadband photodetectors
title_sort developing low-cost nanohybrids of zno nanorods and multi-shaped silver nanoparticles for broadband photodetectors
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10354500/
https://www.ncbi.nlm.nih.gov/pubmed/37476039
http://dx.doi.org/10.1039/d3ra03485b
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