A Facile Synthesis and Properties of Graphene Oxide-Titanium Dioxide-Iron Oxide as Fenton Catalyst

Author:

Jain Bhawana1ORCID,Gade Jaya V.2ORCID,Hadap Arti3ORCID,Ali Huma4,Katubi Khadijah Mohammedsaleh5ORCID,Sasikumar Bashyam6ORCID,Rawat Reena7ORCID

Affiliation:

1. Department of Chemistry, Govt. V.T.Y.PG. Autonomous College, Durg, 491001 Chhattisgarh, India

2. Department of Analytical Chemistry, SNDT Women’s University, Mumbai, 400049 Maharashtra, India

3. Mukesh Patel School of Technology, Management & Engineering, NMIMS, Mumbai, India

4. Department of Chemistry, Maulana Azad National Institute of Technology Bhopal, India

5. Department of Chemistry, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia

6. Faculty of Mechanical and Production Engineering, Arba Minch University, Arba Minch, Ethiopia

7. Department of Chemistry, Echelon Institute of Technology, Faridabad, 121101 Haryana, India

Abstract

Textile industries discharge wastewater in huge amount that contains several toxic contaminants, especially organic dyes. Organic dyes present in wastewater have many adverse effects on environment as well as on living organisms including human beings. The generation of a nanocomposite to trap the toxic organic dyes from wastewater is highly recommended. Herein, we report the preparation of graphene-iron-titanium oxide (GFT) nanocomposite using simple, practical, and cost-effective protocol. The prepared tri-nanocomposite was successfully recognized by employing several analytical techniques. Morphology of the prepared nanocomposites was assessed by SEM coupled with EDS (energy dispersive spectroscopy). HRTEM was used to measure the size of the nanocomposites with shape and morphology. The UV-visible absorption spectra of the nanocomposites were recorded by a UV-visible spectrophotometer. Finally, the crystal structures of the nanocomposites were confirmed by XRD. Moreover, we proposed a plausible mechanism to demonstrate the catalytic activity of GFT oxide nanocomposite for the degradation auramine (AM) dye via a heterogeneous Fenton process.

Funder

Princess Nourah Bint Abdulrahman University

Publisher

Hindawi Limited

Subject

Surfaces and Interfaces,General Chemical Engineering,General Chemistry

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