Enhanced Catalytic, Antioxidant, and Electrochemical Properties of Green‐Synthesized Graphene‐Silver Nanocomposite Utilizing Moringa Oleifera Leaf Extract

Author:

Rahim Abdul1,Venkata Nadh Ratnakaram2,Saeed Al Musawi Mahdi Jawad34,Majety Syam Sundar3,Akhil Syed3,Kumar Nitish5,Jeevan Kiran Monditoka3,Evanglin Gudiwada Grace3,Harika Subha3,Chandu Basavaiah3ORCID,Bollikolla Hari Babu16,Ramachandran D.1

Affiliation:

1. Dept. of Chemistry Acharya Nagarjuna University Guntur Andhra Pradesh 522510 India

2. Industrial Chemical Product Development and Analysis Centre, Department of Chemistry GITAM Deemed to be University – Bengaluru Campus Karnataka 561203 India

3. Dept. of Nanotechnology Acharya Nagarjuna University Guntur Andhra Pradesh 522510 India

4. Dept. of Medical Physics, College of Medicine University of Kerbala P. O. Box 1125 Republic of Iraq

5. Dept. of Physics Ramniranjan, Jhunjhunwala College Ghatkopar(west) Mumbai, Maharashtra 400086 India

6. Dept. of Chemistry Andhra Kesari University Ongole, Andhra Pradesh 523001 India

Abstract

AbstractGraphene, a remarkable material known for its exceptional properties, can be efficiently produced through environmentally friendly methods using renewable resources and eco‐friendly solvents. Recent studies have highlighted the potential of leaf extracts as effective reducing and stabilizing agents in converting graphene oxide (GO) to graphene. This paper presents a green and cost‐effective approach for the effective deposition of silver nanoparticles (Ag NPs) onto the reduced graphene oxide (RGO) nanosheets. The process involves the co‐reduction of GO and AgNO3 in water using Moringa olifera leaf extract, resulting in the formation of a nanocomposite termed reduced graphene oxide‐silver (Ag‐RGO). The formation of RGO and Ag NP is confirmed through UV‐visible spectroscopy, XRD, and Raman spectroscopy techniques. TEM images revealed the morphology of the nanocomposite, depicting 2‐dimensional graphene sheets adorned with Ag NPs. FT‐IR analysis confirmed the removal of oxygenated functional groups from GO, indicating graphene formation. The synthesized Ag‐RGO nanocomposite exhibited significant catalytic, antioxidant, and electrochemical properties. This study underscores the utilization of natural ingredients as sustainable alternatives for producing multifunctional graphene‐silver nanocomposites.

Publisher

Wiley

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