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Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains

A highly uniform spherical MoO(2)-MoO(3)/polypyrrole core-shell nanocomposite has been successfully synthesized as an optoelectronic photon sensing material, capable of detecting light in the UV, Vis, and IR domains. The nanocomposite is prepared through the oxidation of pyrrole using Na(2)MoO(4), r...

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Autores principales: Elsayed, Asmaa M., Alkallas, Fatemah H., Trabelsi, Amira Ben Gouider, Rabia, Mohamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534459/
https://www.ncbi.nlm.nih.gov/pubmed/37763857
http://dx.doi.org/10.3390/mi14091694
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author Elsayed, Asmaa M.
Alkallas, Fatemah H.
Trabelsi, Amira Ben Gouider
Rabia, Mohamed
author_facet Elsayed, Asmaa M.
Alkallas, Fatemah H.
Trabelsi, Amira Ben Gouider
Rabia, Mohamed
author_sort Elsayed, Asmaa M.
collection PubMed
description A highly uniform spherical MoO(2)-MoO(3)/polypyrrole core-shell nanocomposite has been successfully synthesized as an optoelectronic photon sensing material, capable of detecting light in the UV, Vis, and IR domains. The nanocomposite is prepared through the oxidation of pyrrole using Na(2)MoO(4), resulting in a uniform spherical morphology that has been confirmed by TEM, theoretical modeling, and SEM analyses. This morphology contributes to its promising optical behavior, characterized by a small bandgap of 1.36 eV. The optoelectronic photosensing capability of the nanocomposite has been evaluated across the UV, Vis, and IR spectra, demonstrating high efficiency. The photoresponsivity R values indicate the ability of the nanocomposite to generate hot electrons in response to incident photons. With an R value of 4.15 mA·W(−1) at 440 nm, this optoelectronic device exhibits considerable promise for integration into an advanced technological apparatus. The detection (D) value of 9.30 × 10(8) Jones at 440 nm further confirms the high sensitivity in the Vis region. The excellent stability of the device can be attributed to the inherent MoO(2)-MoO(3) oxide and Ppy polymer materials. This stability has been demonstrated through reproducibility studies and current-voltage measurements under various optical conditions. The combination of stability, efficiency, and sensitivity makes this optoelectronic device well suited for light sensing applications in both industrial and commercial settings. Its promising performance opens up opportunities for advancements in various fields requiring accurate and reliable light detection.
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spelling pubmed-105344592023-09-29 Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains Elsayed, Asmaa M. Alkallas, Fatemah H. Trabelsi, Amira Ben Gouider Rabia, Mohamed Micromachines (Basel) Article A highly uniform spherical MoO(2)-MoO(3)/polypyrrole core-shell nanocomposite has been successfully synthesized as an optoelectronic photon sensing material, capable of detecting light in the UV, Vis, and IR domains. The nanocomposite is prepared through the oxidation of pyrrole using Na(2)MoO(4), resulting in a uniform spherical morphology that has been confirmed by TEM, theoretical modeling, and SEM analyses. This morphology contributes to its promising optical behavior, characterized by a small bandgap of 1.36 eV. The optoelectronic photosensing capability of the nanocomposite has been evaluated across the UV, Vis, and IR spectra, demonstrating high efficiency. The photoresponsivity R values indicate the ability of the nanocomposite to generate hot electrons in response to incident photons. With an R value of 4.15 mA·W(−1) at 440 nm, this optoelectronic device exhibits considerable promise for integration into an advanced technological apparatus. The detection (D) value of 9.30 × 10(8) Jones at 440 nm further confirms the high sensitivity in the Vis region. The excellent stability of the device can be attributed to the inherent MoO(2)-MoO(3) oxide and Ppy polymer materials. This stability has been demonstrated through reproducibility studies and current-voltage measurements under various optical conditions. The combination of stability, efficiency, and sensitivity makes this optoelectronic device well suited for light sensing applications in both industrial and commercial settings. Its promising performance opens up opportunities for advancements in various fields requiring accurate and reliable light detection. MDPI 2023-08-30 /pmc/articles/PMC10534459/ /pubmed/37763857 http://dx.doi.org/10.3390/mi14091694 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Elsayed, Asmaa M.
Alkallas, Fatemah H.
Trabelsi, Amira Ben Gouider
Rabia, Mohamed
Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains
title Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains
title_full Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains
title_fullStr Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains
title_full_unstemmed Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains
title_short Highly Uniform Spherical MoO(2)-MoO(3)/Polypyrrole Core-Shell Nanocomposite as an Optoelectronic Photodetector in UV, Vis, and IR Domains
title_sort highly uniform spherical moo(2)-moo(3)/polypyrrole core-shell nanocomposite as an optoelectronic photodetector in uv, vis, and ir domains
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10534459/
https://www.ncbi.nlm.nih.gov/pubmed/37763857
http://dx.doi.org/10.3390/mi14091694
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