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Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications

Silver nanoparticles play a significant role in biomedical sciences due to their unique properties allowing for their use as an effective sensing and remediation platform Herein, the green synthesis of silver nanostructures (Ag NSs), prepared via aqueous extract of waste Brassica oleracea leaves in...

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Autores principales: Rani, Pooja, Ahmed, Bilal, Singh, Jagpreet, Kaur, Jasmeen, Rawat, Mohit, Kaur, Navjot, Matharu, Avtar Singh, AlKahtani, Muneera, Alhomaidi, Eman A.H., Lee, Jintae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9092993/
https://www.ncbi.nlm.nih.gov/pubmed/35574283
http://dx.doi.org/10.1016/j.sjbs.2022.103296
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author Rani, Pooja
Ahmed, Bilal
Singh, Jagpreet
Kaur, Jasmeen
Rawat, Mohit
Kaur, Navjot
Matharu, Avtar Singh
AlKahtani, Muneera
Alhomaidi, Eman A.H.
Lee, Jintae
author_facet Rani, Pooja
Ahmed, Bilal
Singh, Jagpreet
Kaur, Jasmeen
Rawat, Mohit
Kaur, Navjot
Matharu, Avtar Singh
AlKahtani, Muneera
Alhomaidi, Eman A.H.
Lee, Jintae
author_sort Rani, Pooja
collection PubMed
description Silver nanoparticles play a significant role in biomedical sciences due to their unique properties allowing for their use as an effective sensing and remediation platform Herein, the green synthesis of silver nanostructures (Ag NSs), prepared via aqueous extract of waste Brassica oleracea leaves in the presence of silver nitrate solution (10(-4) M), is reported. The Ag NSs are fully characterized and their efficacy with respect to 4-nitrophenol reduction, glucose sensing, and microbes is determined. Visually, the color of silver nitrate containing solution altered from colorless to yellowish, then reddish grey, confirming the formation of Ag NSs. HRTEM and SEAD studies revealed the Ag NSs to have different morphologies (triangular, rod-shaped, hexagonal, etc., within a size range of 20–40 nm) with face-centered cubic (fcc) crystal structure. The Ag NSs possess high efficacy for nitrophenol reduction (<11 min and degradation efficiency of 98.2%), glucose sensing (LOD: 5.83 µM), and antimicrobial activity (E. coli and B. subtilis with clearance zones of 18.3 and 14 mm, respectively). Thus, the current study alludes towards the development of a cost-effective, sustainable, and efficient three-in-one platform for biomedical and environmental applications.
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spelling pubmed-90929932022-05-12 Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications Rani, Pooja Ahmed, Bilal Singh, Jagpreet Kaur, Jasmeen Rawat, Mohit Kaur, Navjot Matharu, Avtar Singh AlKahtani, Muneera Alhomaidi, Eman A.H. Lee, Jintae Saudi J Biol Sci Original Article Silver nanoparticles play a significant role in biomedical sciences due to their unique properties allowing for their use as an effective sensing and remediation platform Herein, the green synthesis of silver nanostructures (Ag NSs), prepared via aqueous extract of waste Brassica oleracea leaves in the presence of silver nitrate solution (10(-4) M), is reported. The Ag NSs are fully characterized and their efficacy with respect to 4-nitrophenol reduction, glucose sensing, and microbes is determined. Visually, the color of silver nitrate containing solution altered from colorless to yellowish, then reddish grey, confirming the formation of Ag NSs. HRTEM and SEAD studies revealed the Ag NSs to have different morphologies (triangular, rod-shaped, hexagonal, etc., within a size range of 20–40 nm) with face-centered cubic (fcc) crystal structure. The Ag NSs possess high efficacy for nitrophenol reduction (<11 min and degradation efficiency of 98.2%), glucose sensing (LOD: 5.83 µM), and antimicrobial activity (E. coli and B. subtilis with clearance zones of 18.3 and 14 mm, respectively). Thus, the current study alludes towards the development of a cost-effective, sustainable, and efficient three-in-one platform for biomedical and environmental applications. Elsevier 2022-06 2022-04-22 /pmc/articles/PMC9092993/ /pubmed/35574283 http://dx.doi.org/10.1016/j.sjbs.2022.103296 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Rani, Pooja
Ahmed, Bilal
Singh, Jagpreet
Kaur, Jasmeen
Rawat, Mohit
Kaur, Navjot
Matharu, Avtar Singh
AlKahtani, Muneera
Alhomaidi, Eman A.H.
Lee, Jintae
Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
title Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
title_full Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
title_fullStr Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
title_full_unstemmed Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
title_short Silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
title_sort silver nanostructures prepared via novel green approach as an effective platform for biological and environmental applications
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9092993/
https://www.ncbi.nlm.nih.gov/pubmed/35574283
http://dx.doi.org/10.1016/j.sjbs.2022.103296
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