Exploring the Antibacterial Potential of Green-Synthesized MgO and ZnO Nanoparticles from Two Plant Root Extracts

Author:

Seghir Bachir Ben123ORCID,Hima Meriem1,Moulatti Fatima1,Sahraoui Ibtihal1,Ben Amor Ilham12ORCID,Zeghoud Soumeia12ORCID,Hemmami Hadia12ORCID,Kouadri Imane234,Ben Amor Asma12,Messaoudi Mohammed56ORCID,Ahmed Shakeel789ORCID,Rebiai Abdelkrim26ORCID,Pohl Pawel10ORCID

Affiliation:

1. Department of Process Engineering and Petrochemical, Faculty of Technology, University of El Oued, El Oued 39000, Algeria

2. Renewable Energy Development Unit in Arid Zones (UDERZA), University of El Oued, El Oued 39000, Algeria

3. Laboratory of Industrial Analysis and Materials Engineering (LAGIM), University of 8 May 1945, P.O. Box 401, Guelma 24000, Algeria

4. Department of Process Engineering, Faculty of Science and Technology, University of 8 May 1945, P.O. Box 401, Guelma 24000, Algeria

5. Nuclear Research Centre of Birine, P.O. Box 180, Ain Oussera 17200, Algeria

6. Laboratory of Applied Chemistry and Environment (LCAE), Department of Chemistry, Faculty of Exact Sciences, University of Hamma Lakhdar El Oued, B.P. 789, El Oued 39000, Algeria

7. Department of Chemistry, Government Degree College Mendhar, Kashmir 185211, India

8. Higher Education Department, Government of Jammu and Kashmir, Srinagar 190001, India

9. University Center for Research and Development (UCRD), Chandigarh University, Mohali 140413, India

10. Department of Analytical Chemistry and Chemical Metallurgy, Faculty of Chemistry, University of Science and Technology, Wyspianskiego 27, 50-370 Wroclaw, Poland

Abstract

The green approach-based nanoparticle synthesis is considered a more cost-effective and ecologically responsible method of producing nanoparticles than other standard techniques. A major accomplishment in resolving these issues is the use of nanoparticles for environmental pollution remediation. This article describes a simple method for producing MgO and ZnO nanoparticles (NPs) using aqueous extracts of Zingiber officinale and Glycyrrhiza roots as the stabilizing and reducing agents, respectively. Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy-dispersed X-ray (EDX) spectroscopy methods were used to characterize the biologically synthesized metal oxide nanoparticles (MO NPs). The XRD results showed that the mean crystallite sizes of synthesized ZnO and MgO NPs, which have excellent purity, are 12.35 nm and 4.83 nm, respectively. The spherical or elliptical shape of the synthesized NPs was confirmed by the SEM analysis. The antibacterial activity of the synthesized NPs against both Gram-negative and Gram-positive bacteria was thoroughly investigated. With a medium zone of inhibition of 7 to 10 mm, the as-synthesized MgO NPs and ZnO NPs demonstrated moderate antibacterial activity towards various bacterial strains.

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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