Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite

Abstract Zinc oxide (ZnO) is a fascinating semiconductor material with many applications such as adsorption, photocatalysis, sensor, and antibacterial activities. By using a poly (vinyl alcohol) (PVA) polymer as a capping agent and metal oxides (iron and manganese) as a couple, the porous PVA-aided...

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Main Authors: Buzuayehu Abebe, H. C. Ananda Murthy, Enyew Amare Zereffa
Format: Article
Language:English
Published: SpringerOpen 2021-01-01
Series:Nanoscale Research Letters
Subjects:
Online Access:https://doi.org/10.1186/s11671-020-03464-0
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spelling doaj-8a1d324cdc3041e0b923d2d5c3b363462021-01-03T12:06:48ZengSpringerOpenNanoscale Research Letters1556-276X2021-01-011611910.1186/s11671-020-03464-0Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocompositeBuzuayehu Abebe0H. C. Ananda Murthy1Enyew Amare Zereffa2Department of Applied Chemistry, School of Applied Natural Science, Adama Science and Technology UniversityDepartment of Applied Chemistry, School of Applied Natural Science, Adama Science and Technology UniversityDepartment of Applied Chemistry, School of Applied Natural Science, Adama Science and Technology UniversityAbstract Zinc oxide (ZnO) is a fascinating semiconductor material with many applications such as adsorption, photocatalysis, sensor, and antibacterial activities. By using a poly (vinyl alcohol) (PVA) polymer as a capping agent and metal oxides (iron and manganese) as a couple, the porous PVA-aided Zn/Fe/Mn ternary oxide nanocomposite material (PTMO-NCM) was synthesized. The thermal, optical, crystallinity, chemical bonding, porosity, morphological, charge transfer properties of the synthesized materials were confirmed by DTG/DSC, UV–Vis-DRS, XRD, FT-IR, BET, SEM-EDAX/TEM-HRTEM-SAED, and CV/EIS/amperometric analytical techniques, respectively. The PTMO-NCM showed an enhanced surface area and charge transfer capability, compared to ZnO. Using the XRD pattern and TEM image analysis, the crystalline size of the materials was confirmed to be in the nanometer range. The porosity and superior charge transfer capabilities of the PTMO-NCM were confirmed from the BET, HRTEM (IFFT)/SAED, and CV/EIS analysis. The adsorption kinetics (adsorption reaction/adsorption diffusion) and adsorption isotherm test confirmed the presence of a chemisorption type of adsorbate/methylene blue dye-adsorbent/PTMO-NCM interaction. The photocatalytic performance was tested on the Congo red and Acid Orange-8 dyes. The superior ascorbic acid sensing capability of the material was understood from CV and amperometric analysis. The noble antibacterial activities of the material were also confirmed on both gram-negative and gram-positive bacteria.https://doi.org/10.1186/s11671-020-03464-0Porous ternary nanocompositeAdsorptionPhotocatalysisAntibacterial activitySensorMechanisms
collection DOAJ
language English
format Article
sources DOAJ
author Buzuayehu Abebe
H. C. Ananda Murthy
Enyew Amare Zereffa
spellingShingle Buzuayehu Abebe
H. C. Ananda Murthy
Enyew Amare Zereffa
Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite
Nanoscale Research Letters
Porous ternary nanocomposite
Adsorption
Photocatalysis
Antibacterial activity
Sensor
Mechanisms
author_facet Buzuayehu Abebe
H. C. Ananda Murthy
Enyew Amare Zereffa
author_sort Buzuayehu Abebe
title Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite
title_short Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite
title_full Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite
title_fullStr Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite
title_full_unstemmed Multifunctional application of PVA-aided Zn–Fe–Mn coupled oxide nanocomposite
title_sort multifunctional application of pva-aided zn–fe–mn coupled oxide nanocomposite
publisher SpringerOpen
series Nanoscale Research Letters
issn 1556-276X
publishDate 2021-01-01
description Abstract Zinc oxide (ZnO) is a fascinating semiconductor material with many applications such as adsorption, photocatalysis, sensor, and antibacterial activities. By using a poly (vinyl alcohol) (PVA) polymer as a capping agent and metal oxides (iron and manganese) as a couple, the porous PVA-aided Zn/Fe/Mn ternary oxide nanocomposite material (PTMO-NCM) was synthesized. The thermal, optical, crystallinity, chemical bonding, porosity, morphological, charge transfer properties of the synthesized materials were confirmed by DTG/DSC, UV–Vis-DRS, XRD, FT-IR, BET, SEM-EDAX/TEM-HRTEM-SAED, and CV/EIS/amperometric analytical techniques, respectively. The PTMO-NCM showed an enhanced surface area and charge transfer capability, compared to ZnO. Using the XRD pattern and TEM image analysis, the crystalline size of the materials was confirmed to be in the nanometer range. The porosity and superior charge transfer capabilities of the PTMO-NCM were confirmed from the BET, HRTEM (IFFT)/SAED, and CV/EIS analysis. The adsorption kinetics (adsorption reaction/adsorption diffusion) and adsorption isotherm test confirmed the presence of a chemisorption type of adsorbate/methylene blue dye-adsorbent/PTMO-NCM interaction. The photocatalytic performance was tested on the Congo red and Acid Orange-8 dyes. The superior ascorbic acid sensing capability of the material was understood from CV and amperometric analysis. The noble antibacterial activities of the material were also confirmed on both gram-negative and gram-positive bacteria.
topic Porous ternary nanocomposite
Adsorption
Photocatalysis
Antibacterial activity
Sensor
Mechanisms
url https://doi.org/10.1186/s11671-020-03464-0
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