Green Synthesis and Characterization of Silver Nanoparticles Using Flaxseed Extract and Evaluation of Their Antibacterial and Antioxidant Activities

Author:

Alzubaidi Azalldeen Kazal1ORCID,Al-Kaabi Wasan J.2,Ali Amer Al3ORCID,Albukhaty Salim45ORCID,Al-Karagoly Hassan6ORCID,Sulaiman Ghassan M.7ORCID,Asiri Mohammed8ORCID,Khane Yasmina9ORCID

Affiliation:

1. College of Agriculture, University of Misan, Al-Amara 62001, Iraq

2. Department of Science, College of Basic Education, University of Misan, Maysan 62001, Iraq

3. Department of Medical Laboratory Sciences, College of Applied Medical Sciences, University of Bisha, 255, Bisha 67714, Saudi Arabia

4. Department of Chemistry, College of Science, University of Misan, Maysan 62001, Iraq

5. College of Medicine, University of Warith Al-Anbiyaa, Karbala 56001, Iraq

6. Department of Internal and Preventive Medicine, College of Veterinary Medicine, University of Al-Qadisiyah, Al-Diwaniyah 58002, Iraq

7. Division of Biotechnology, Department of Applied Sciences, University of Technology, Baghdad 10066, Iraq

8. Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Khalid University, Abha 9088, Saudi Arabia

9. Faculté des sciences et technologies, Université de Ghardaia, BP 455, Ghardaïa 47000, Algeria

Abstract

Bioactive plant chemicals are considered to be rich and useful for creating nanomaterials. The current work investigated the biosynthesis of silver nanoparticles (AgNPs) using ethanolic flaxseed extract as an efficient reducing factor. The production of AgNPs was verified by color-shifting observation of the mixture of silver nitrate (AgNO3) from yellow to a reddish suspension after the addition of the extract and by evaluating it by UV–visible inspection. Additionally, FTIR spectrum was used to support the identification of functional groups. The morphology and structure of AgNPs were assessed using scanning electron microscopy (SEM), and X-ray diffraction (XRD) examinations, which revealed spherical AgNPs with a diameter of 46.98 ± 12.45 nm and a crystalline structure. The zeta potential (ZP) and dynamic light scattering (DLS) measurements of AgNPs revealed values of −44.5 mV and 231.8 nm, respectively, suggesting appropriate physical stability. The antibacterial activity of AgNPs was investigated against Escherichia coli, Klebsiella pneumoniae, Staphylococcus aureus, and Streptococcus pyogenes, while the antioxidant effect was investigated using the DPPH technique. These obtained AgNPs could potentially be used as efficient antibacterial and antioxidant nanomaterials.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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