Elucidating the structural, catalytic, and antibacterial traits of Ficus carica and Azadirachta indica leaf extract‐mediated synthesis of the Ag/CuO/rGO nanocomposite

Author:

Fayyaz Zirwa1,Farrukh Muhammad Akhyar2ORCID,Ul‐Hamid Anwar3,Chong Kok‐Keong4

Affiliation:

1. Department of Chemistry Forman Christian College (A Chartered University) Lahore Pakistan

2. Department of Basic and Applied Chemistry, Faculty of Science and Technology University of Central Punjab Lahore Pakistan

3. Core Research Facilities King Fahd University of Petroleum & Minerals Dhahran Saudi Arabia

4. Lee Kong Chian Faculty of Engineering and Science Universiti Tunku Abdul Rahman Kajang Malaysia

Abstract

AbstractThe present exploration demonstrates the efficient, sustainable, cost‐effective, and environment‐friendly green approach for the synthesis of silver (Ag)‐doped copper oxide (CuO) embedded with reduced graphene oxide (rGO) nanocomposite using the green one‐pot method and the green deposition method. Leaf extracts of Ficus carica and Azadirachta indica were used for both methods as reducing and capping agents. The effect of methodology and plant extract was analyzed through different characterization techniques such as UV‐visible spectroscopy, Fourier transform infrared (FT‐IR) spectroscopy, thermogravimetric analysis (TGA), x‐ray diffraction (XRD) analysis, scanning electron microscopy (SEM), high‐resolution transmission electron microscopy (HRTEM). The lowest band gap of 3.0 eV was observed for the Ag/CuO/rGO prepared by the green one‐pot method using F. carica. The reduction of graphene oxide (GO) and the formation of metal oxide was confirmed through functional group detection using FT‐IR. Calculation of thermodynamic parameters showed that all reactions involved were nonspontaneous and endothermic which shows the stability of nanocomposites. XRD studies revealed the crystallinity, phase purity and small average crystallite size of 32.67 nm. SEM images disclosed that the morphology of the nanocomposites was spherical with agglomeration and rough texture. The particle size of the nanocomposites calculated through HRTEM was found in agreement with the XRD results. The numerous properties of the synthesized nanocomposites enhanced their potential against the degradation of methylene blue, rhodamine B, and ciprofloxacin. The highest percentage degradation of Ag/CuO/rGO was found to be 97%, synthesized using the green one‐pot method with F. carica against ciprofloxacin, which might be due to the lowest band gap, delayed electron–hole pair recombination, and large surface area available. The nanocomposites were also tested against the Gram‐positive and Gram‐negative bacteria.Research Highlights Facile synthesis of Ag/CuO/rGO nanocomposite using a green one‐pot method and the green deposition method. The lowest band gap of 3.0 eV was observed for nanocomposite prepared by a green one‐pot method using Ficus carica. Least average crystallite size of 32.67 nm was found for nanocomposite prepared by a green one‐pot method using F. carica. Highest antibacterial and catalytic activity (97%) was obtained against ciprofloxacin with nanocomposite prepared through green one‐pot method using F. carica. A mechanism of green synthesis is proposed.

Publisher

Wiley

Subject

Medical Laboratory Technology,Instrumentation,Histology,Anatomy

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