Solanum tuberosum Leaf Extract Templated Synthesis of Co3O4 Nanoparticles for Electrochemical Sensor and Antibacterial Applications

Author:

Bekele Eneyew Tilahun1ORCID,Murthy H. C. Ananda1ORCID,Muniswamy Dhanalakshmi2ORCID,Lemenh Yeshaneh Adimasu3ORCID,Shume Minale Shegaw4ORCID,Tadesse Ayanie Gezahegn1ORCID,Kumar Avvaru Praveen1ORCID,Ravikumar C. R.5ORCID,Balachandran R.6ORCID,Roy Arpita7ORCID

Affiliation:

1. Department of Applied Chemistry, School of Applied Natural Science, Adama Science and Technology University, P O Box 1888, Adama, Ethiopia

2. Department of Physics, Government Science College (Nrupathunga University), Bengaluru 560 001, India

3. Department of Applied Biology, School of Applied Natural Science, Adama Science and Technology University, P O Box 1888, Adama, Ethiopia

4. Department of Applied Physics, School of Applied Natural Science, Adama Science and Technology University, P O Box 1888, Adama, Ethiopia

5. Research Centre, Department of Science, East-West Institute of Technology, Bangalore 560091, India

6. School of Electrical Engineering and Computing, Adama Science and Technology University, P O Box 1888, Adama, Ethiopia

7. Department of Biotechnology, School of Engineering & Technology, Sharda University, Greater Noida, India

Abstract

Green synthesis of metal oxide nanoparticles (NPs) is a viable alternative methodology because of cost-effective and availability of environmentally friendly templates for desired application, which has attracted the attention of researchers in recent years. In the present study, Co3O4 NPs were synthesized in various volume ratios in the presence of Solanum tuberosum leaf extract as a template. The synthesized Co3O4 NPs were characterized by X-ray diffraction (XRD), scanning electron microscopy-energy dispersive X-ray spectroscopy (SEM-EDX), transmission electron microscopy (TEM), high resolution transmission electron microscopy (HRTEM), surface area electron diffraction (SAED), UV-Vis diffuse reflectance spectroscopy (UV-DRS), and Fourier transform infrared (FTIR) spectroscopy. XRD analysis found that the average crystalline sizes for the 1 : 2, 1 : 1, and 2 : 1 volume ratios was 25.83, 21.05, and 27.98 nm, respectively. SEM-EDX and TEM analyses suggest that the green-synthesized Co3O4 NPs are spherical in shape without the presence of impurities. The band gap E g values of the 1 : 2, 1 : 1, and 2 : 1 volume ratios of Co3O4 NPs were found to be 1.83, 1.77, and 2.19 eV, respectively. FTIR analysis confirmed the presence of various bioactive ingredients within the leaf extract of Solanum tuberosum. Co3O4 NPs-modified electrodes showed better sensing capability towards ascorbic acid and citric acid due to enhanced electron transfer kinetics. Among three volume ratios (1 : 2, 1 : 1, and 2 : 1) of Co3O4 nanoelectrodes, 1 : 1 and 2 : 1 were identified as the best performing nanoelectrodes. This is possibly due to the high catalytic behavior and the more homogenized surface structure. Co3O4 (1 : 2) nanodrug showed the enhanced antibacterial activity (16 mm) towards S. aureus which is attributed to the formation of enhanced reactive oxygen species (ROS).

Publisher

Hindawi Limited

Subject

Inorganic Chemistry,Organic Chemistry,Biochemistry

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