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Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments

Noble metal nanoparticles (NMNPs) are viable alternative green sources compared to the chemical available methods in several approach like Food, medical, biotechnology, and textile industries. The biological synthesis of platinum nanoparticles (PtNPs), as a strong photocatalytic agent, has proved as...

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Autores principales: Rehman, Khalil ur, Gouda, Mostafa, Zaman, Umber, Tahir, Kamran, Khan, Shahid Ullah, Saeed, Sumbul, Khojah, Ebtihal, El-Beltagy, Alaa, Zaky, Ahmed A., Naeem, Mohamed, Khan, Muhammad Imran, Khattak, Noor Saeed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000267/
https://www.ncbi.nlm.nih.gov/pubmed/35407197
http://dx.doi.org/10.3390/nano12071079
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author Rehman, Khalil ur
Gouda, Mostafa
Zaman, Umber
Tahir, Kamran
Khan, Shahid Ullah
Saeed, Sumbul
Khojah, Ebtihal
El-Beltagy, Alaa
Zaky, Ahmed A.
Naeem, Mohamed
Khan, Muhammad Imran
Khattak, Noor Saeed
author_facet Rehman, Khalil ur
Gouda, Mostafa
Zaman, Umber
Tahir, Kamran
Khan, Shahid Ullah
Saeed, Sumbul
Khojah, Ebtihal
El-Beltagy, Alaa
Zaky, Ahmed A.
Naeem, Mohamed
Khan, Muhammad Imran
Khattak, Noor Saeed
author_sort Rehman, Khalil ur
collection PubMed
description Noble metal nanoparticles (NMNPs) are viable alternative green sources compared to the chemical available methods in several approach like Food, medical, biotechnology, and textile industries. The biological synthesis of platinum nanoparticles (PtNPs), as a strong photocatalytic agent, has proved as more effective and safer method. In this study, PtNPs were synthesized at four different temperatures (25 °C, 50 °C, 70 °C, and 100 °C). PtNPs synthesized at 100 °C were smaller and exhibited spherical morphology with a high degree of dispersion. A series of physicochemical characterizations were applied to investigate the synthesis, particle size, crystalline nature, and surface morphology of PtNPs. The biosynthesized PtNPs were tested for the photodegradation of methylene blue (MB) under visible light irradiations. The results showed that PtNPs exhibited remarkable photocatalytic activity by degrading 98% of MB only in 40 min. The acid phosphatase mediated PtNPs showed strong bacterial inhibition efficiency against S. aureus and E. coli. Furthermore, it showed high antioxidant activity (88%) against 1,1-diphenyl-2-picryl-hydrazil (DPPH). In conclusion, this study provided an overview of the applications of PtNPs in food chemistry, biotechnology, and textile industries for the deterioration of the natural and synthetic dyes and its potential application in the suppression of pathogenic microbes of the biological systems. Thus, it could be used as a novel approach in the food microbiology, biomedical and environmental applications.
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spelling pubmed-90002672022-04-12 Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments Rehman, Khalil ur Gouda, Mostafa Zaman, Umber Tahir, Kamran Khan, Shahid Ullah Saeed, Sumbul Khojah, Ebtihal El-Beltagy, Alaa Zaky, Ahmed A. Naeem, Mohamed Khan, Muhammad Imran Khattak, Noor Saeed Nanomaterials (Basel) Article Noble metal nanoparticles (NMNPs) are viable alternative green sources compared to the chemical available methods in several approach like Food, medical, biotechnology, and textile industries. The biological synthesis of platinum nanoparticles (PtNPs), as a strong photocatalytic agent, has proved as more effective and safer method. In this study, PtNPs were synthesized at four different temperatures (25 °C, 50 °C, 70 °C, and 100 °C). PtNPs synthesized at 100 °C were smaller and exhibited spherical morphology with a high degree of dispersion. A series of physicochemical characterizations were applied to investigate the synthesis, particle size, crystalline nature, and surface morphology of PtNPs. The biosynthesized PtNPs were tested for the photodegradation of methylene blue (MB) under visible light irradiations. The results showed that PtNPs exhibited remarkable photocatalytic activity by degrading 98% of MB only in 40 min. The acid phosphatase mediated PtNPs showed strong bacterial inhibition efficiency against S. aureus and E. coli. Furthermore, it showed high antioxidant activity (88%) against 1,1-diphenyl-2-picryl-hydrazil (DPPH). In conclusion, this study provided an overview of the applications of PtNPs in food chemistry, biotechnology, and textile industries for the deterioration of the natural and synthetic dyes and its potential application in the suppression of pathogenic microbes of the biological systems. Thus, it could be used as a novel approach in the food microbiology, biomedical and environmental applications. MDPI 2022-03-25 /pmc/articles/PMC9000267/ /pubmed/35407197 http://dx.doi.org/10.3390/nano12071079 Text en © 2022 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
Rehman, Khalil ur
Gouda, Mostafa
Zaman, Umber
Tahir, Kamran
Khan, Shahid Ullah
Saeed, Sumbul
Khojah, Ebtihal
El-Beltagy, Alaa
Zaky, Ahmed A.
Naeem, Mohamed
Khan, Muhammad Imran
Khattak, Noor Saeed
Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments
title Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments
title_full Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments
title_fullStr Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments
title_full_unstemmed Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments
title_short Optimization of Platinum Nanoparticles (PtNPs) Synthesis by Acid Phosphatase Mediated Eco-Benign Combined with Photocatalytic and Bioactivity Assessments
title_sort optimization of platinum nanoparticles (ptnps) synthesis by acid phosphatase mediated eco-benign combined with photocatalytic and bioactivity assessments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000267/
https://www.ncbi.nlm.nih.gov/pubmed/35407197
http://dx.doi.org/10.3390/nano12071079
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