Structural, Morphological, Optical, and Antibacterial Activities of Zinc Oxide Nanopowders: A Comparative Study of Green and Soft Chemical Synthesis

Author:

Siriya Pushpa K. Catherine1ORCID,Sakthivel P.2ORCID,Saravanakumar K.3ORCID,Anuradha N.1ORCID,Sankaranarayanan R. K.4ORCID,Paulraj Mosae Selvakumar5ORCID

Affiliation:

1. Post-Graduate and Research Department of Physics, Bon Secours College for Women, Thanjavur 613006, Tamil Nadu, India

2. Centre for Materials Science, Department of Physics, Science and Humanities, Faculty of Engineering, Karpagam Academy of Higher Education, Coimbatore 641021, India

3. Department of Physics, Mahendra Institute of Technology (Autonomous), Mallasamudram, Namakkal 637503, Tamil Nadu, India

4. Centre for Nano Science and Technology, Department of Chemistry, Chennai Institute of Technology, Kundrathur 600069, Tamil Nadu, India

5. AUW Chemistry Hub, Science and Math Program, Asian University for Women, Chattogram, Bangladesh

Abstract

Zinc oxide, a well-known inorganic metal oxide in nanoparticle form, has outstanding antibacterial properties. In this work, the authors focus on determining ZnO nanoparticles’ structural, optical, and antibacterial activity. A simple soft chemical route synthesizes C-ZnO nanoparticles chemically, while the green synthesis method is used to prepare G-ZnO nanoparticles. Ocimum tenuiflorum leaf extract was used to prepare G-ZnO nanopowders. These samples are investigated and compared in terms of their structural, morphological, optical, and antibacterial properties. According to XRD investigations, the synthesized ZnO nanopowders possess a hexagonal structure. The particle size of G-ZnO is smaller than that of C-ZnO nanoparticles. The XPS result revealed the binding and interactions between molecules. The FTIR study confirmed the presence of molecules and their vibrations. UV-vis-DRS spectroscopy was used to investigate optical properties such as reflectance and band gap. The grain size of the G-ZnO nanopowders was decreased, and oxygen vacancy was produced. The antibacterial efficiency of plant extracts against two different bacterial strains, S. aureus (Gram-positive) and E.coli (Gram-negative), has been studied and reported.

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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