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Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents

Plant-mediated synthesis of nanoparticles exhibits great potential to minimize the generation of chemical waste through the utilization of non-toxic precursors. In this research work, we report the synthesis of magnesium oxide (MgO) and cobalt oxide (Co(3)O(4)) nanoparticles through a green approach...

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Autores principales: Manzoor, Suryyia, Yasmin, Ghazala, Raza, Nadeem, Fernandez, Javier, Atiq, Rashida, Chohan, Sobia, Iqbal, Ayesha, Manzoor, Shamaila, Malik, Barizah, Winter, Franz, Azam, Mudassar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400448/
https://www.ncbi.nlm.nih.gov/pubmed/34451208
http://dx.doi.org/10.3390/polym13162669
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author Manzoor, Suryyia
Yasmin, Ghazala
Raza, Nadeem
Fernandez, Javier
Atiq, Rashida
Chohan, Sobia
Iqbal, Ayesha
Manzoor, Shamaila
Malik, Barizah
Winter, Franz
Azam, Mudassar
author_facet Manzoor, Suryyia
Yasmin, Ghazala
Raza, Nadeem
Fernandez, Javier
Atiq, Rashida
Chohan, Sobia
Iqbal, Ayesha
Manzoor, Shamaila
Malik, Barizah
Winter, Franz
Azam, Mudassar
author_sort Manzoor, Suryyia
collection PubMed
description Plant-mediated synthesis of nanoparticles exhibits great potential to minimize the generation of chemical waste through the utilization of non-toxic precursors. In this research work, we report the synthesis of magnesium oxide (MgO) and cobalt oxide (Co(3)O(4)) nanoparticles through a green approach using Manilkara zapota leaves extract, their surface modification by polyaniline (PANI), and antifungal properties against Aspergillus niger. Textural and structural characterization of modified and unmodified metal oxide nanoparticles were evaluated using FT-IR, SEM, and XRD. The optimal conditions for inhibition of Aspergillus niger were achieved by varying nanoparticles’ concentration and time exposure. Results demonstrate that PANI/MgO nanoparticles were superior in function relative to PANI/Co(3)O(4) nanoparticles to control the growth rate of Aspergillus niger at optimal conditions (time exposure of 72 h and nanoparticles concentration of 24 mM). A percentage decrease of 73.2% and 65.1% in fungal growth was observed using PANI/MgO and PANI/Co(3)O(4) nanoparticles, respectively, which was higher than the unmodified metal oxide nanoparticles (67.5% and 63.2%).
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spelling pubmed-84004482021-08-29 Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents Manzoor, Suryyia Yasmin, Ghazala Raza, Nadeem Fernandez, Javier Atiq, Rashida Chohan, Sobia Iqbal, Ayesha Manzoor, Shamaila Malik, Barizah Winter, Franz Azam, Mudassar Polymers (Basel) Article Plant-mediated synthesis of nanoparticles exhibits great potential to minimize the generation of chemical waste through the utilization of non-toxic precursors. In this research work, we report the synthesis of magnesium oxide (MgO) and cobalt oxide (Co(3)O(4)) nanoparticles through a green approach using Manilkara zapota leaves extract, their surface modification by polyaniline (PANI), and antifungal properties against Aspergillus niger. Textural and structural characterization of modified and unmodified metal oxide nanoparticles were evaluated using FT-IR, SEM, and XRD. The optimal conditions for inhibition of Aspergillus niger were achieved by varying nanoparticles’ concentration and time exposure. Results demonstrate that PANI/MgO nanoparticles were superior in function relative to PANI/Co(3)O(4) nanoparticles to control the growth rate of Aspergillus niger at optimal conditions (time exposure of 72 h and nanoparticles concentration of 24 mM). A percentage decrease of 73.2% and 65.1% in fungal growth was observed using PANI/MgO and PANI/Co(3)O(4) nanoparticles, respectively, which was higher than the unmodified metal oxide nanoparticles (67.5% and 63.2%). MDPI 2021-08-10 /pmc/articles/PMC8400448/ /pubmed/34451208 http://dx.doi.org/10.3390/polym13162669 Text en © 2021 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
Manzoor, Suryyia
Yasmin, Ghazala
Raza, Nadeem
Fernandez, Javier
Atiq, Rashida
Chohan, Sobia
Iqbal, Ayesha
Manzoor, Shamaila
Malik, Barizah
Winter, Franz
Azam, Mudassar
Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents
title Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents
title_full Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents
title_fullStr Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents
title_full_unstemmed Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents
title_short Synthesis of Polyaniline Coated Magnesium and Cobalt Oxide Nanoparticles through Eco-Friendly Approach and Their Application as Antifungal Agents
title_sort synthesis of polyaniline coated magnesium and cobalt oxide nanoparticles through eco-friendly approach and their application as antifungal agents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400448/
https://www.ncbi.nlm.nih.gov/pubmed/34451208
http://dx.doi.org/10.3390/polym13162669
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