Synthesis and Characterization of TiO2-Water Nanofluids

Author:

Surakasi Raviteja1ORCID,Sripathi Srujana2ORCID,Nadimpalli Sarada Purnima3ORCID,Afzal Sibtain4ORCID,Singh Bharat5ORCID,Tripathi Manoj6ORCID,Hafa Rahel Alemu7ORCID

Affiliation:

1. Department of Mechanical, Lendi Institute of Engineering and Technology, Jonnada, Vizianagaram, Andhra Pradesh, India

2. Department of Biotechnology, Center for Post Graduate Studies, Jain University, Jayanagar, 9th Block, Bengaluru, 560011 Karnataka, India

3. Department of Mechanical, Gayatri Vidya Parishad College for Degree and PG Courses, Rushikonda, Visakhapatnam, Andhra Pradesh, India

4. Bio-Medical Research Laboratory, College of Medicine, Alfaisal University, Riyadh, Central Region, Saudi Arabia

5. Department of Mechanical, GLA University, Mathura, Uttar Pradesh, India

6. Department of Physics and Materials Science and Engineering, Jaypee Institute of Information Technology, A-10 Sector 62, Noida, 201309 Uttar Pradesh, India

7. Department of Chemical Engineering, College of Biological and Chemical Engineering, Addis Ababa Science and Technology University, Ethiopia

Abstract

Nanofluids made of TiO2 and multiwalled carbon nanotubes are the focus of our study. Using TiO2 and water as the basic fluids, nanofluids were created in 100 : 0, 75 : 25, and 50 : 50 proportions. Carbon nanotubes (CNTs) were disseminated into these base fluids of three types at 0.125, 0.25, and 0.5 percentages. Over the course of two months, the change of zeta potential is monitored to assess the stability of the dispersion. XRD analysis and SEM and TEM analysis are carried out for TiO2 nanofluids. Nanoparticles were analyzed using EDAX analysis to identify their composition. SEM examination was used to investigate the morphology for TiO2 nanoparticles. Particles of TiO2 produced in this manner seemed to have an average diameter of 27 nm. Nanofluids have a poor stability, which is the most important aspect of employing them, although most studies did not focus on this. When it comes to nanofluids, this study is unique in that it provides an in-depth look of surface modification approaches that have been employed by researchers to address these issues, as well as an evaluation of their stability over two months. Solubility is improved by acid treatment of CNTs, which results in functional groups on the surface of CNTs.

Publisher

Hindawi Limited

Subject

Surfaces and Interfaces,General Chemical Engineering,General Chemistry

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