Biogenic Preparation of ZnO Nanostructures Using Leafy Spinach Extract for High-Performance Photodegradation of Methylene Blue under the Illumination of Natural Sunlight

Author:

Jakhrani Mansab Ali1,Bhatti Muhammad Ali2,Tahira Aneela3,Shah Aqeel Ahmed4ORCID,Dawi Elmuez A.5ORCID,Vigolo Brigitte6ORCID,Nafady Ayman7ORCID,Saleem Lama M.8ORCID,Haj Ismail Abd Al Karim5ORCID,Ibupoto Zafar Hussain9ORCID

Affiliation:

1. Institute of Physics, University of Sindh, Jamshoro 76080, Pakistan

2. Institute of Environmental Sciences, University of Sindh, Jamshoro 76080, Pakistan

3. Institute of Chemistry, Shah Abdul Latif University, Khairpur Mirs 66111, Pakistan

4. Department of Metallurgy, NED University of Engineering and Technology, Karachi 75270, Pakistan

5. Nonlinear Dynamics Research Centre (NDRC), Ajman University, Ajman P.O. Box 346, United Arab Emirates

6. Institute Jean Lamour, Université de Lorraine, CNRS, Institut Jean Lamour (IJL), F-54000 Nancy, France

7. Department of Chemistry, College of Science, King Saud University, Riyadh 11451, Saudi Arabia

8. Biomolecular Science, Earth and Life Science, Amsterdam University, Kruislaan 404, 1098 SM Amsterdam, The Netherlands

9. Institute of Chemistry, University of Sindh, Jamshoro 76080, Pakistan

Abstract

To cope with environmental pollution caused by toxic emissions into water streams, high-performance photocatalysts based on ZnO semiconductor materials are urgently needed. In this study, ZnO nanostructures are synthesized using leafy spinach extract using a biogenic approach. By using phytochemicals contained in spinach, ZnO nanorods are transformed into large clusters assembled with nanosheets with visible porous structures. Through X-ray diffraction, it has been demonstrated that leafy spinach extract prepared with ZnO is hexagonal in structure. Surface properties of ZnO were altered by using 10 mL, 20 mL, 30 mL, and 40 mL quantities of leafy spinach extract. The size of ZnO crystallites is typically 14 nanometers. In the presence of sunlight, ZnO nanostructures mineralized methylene blue. Studies investigated photocatalyst doses, dye concentrations, pH effects on dye solutions, and scavengers. The ZnO nanostructures prepared with 40 mL of leafy spinach extract outperformed the degradation efficiency of 99.9% for the MB since hydroxyl radicals were primarily responsible for degradation. During degradation, first-order kinetics were observed. Leafy spinach extract could be used to develop novel photocatalysts for the production of solar hydrogen and environmental hydrogen.

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

Reference80 articles.

1. “Green” synthesis of metals and their oxide nanoparticles: Applications for environmental remediation;Singh;J. Nanobiotechnol.,2018

2. The effect of manganese doping on structural, optical, and photocatalytic activity of zinc oxide nanoparticles;Singh;Compos. Part B Eng.,2019

3. Green sol–gel synthesis of CoMnCrO4 spinel nanoparticles and their photocatalytic application;Moradnia;Micro Nano Lett.,2020

4. Green synthesis of ZnO nanoparticles via Sol-gel method and investigation of its application in solvent-free synthesis of 12-Aryl-tetrahydrobenzo[α]xanthene-11-one derivatives under microwave irradiation;Taghavi;Chem. Methodol.,2019

5. Enhanced photocatalytic activity of electrospun PAN/Ag-G NFs under solar irradiation for effective degradation of hazardous organic dyes;Shah;ChemistrySelect,2020

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