Comparative analysis on the photocatalytic activity of titania and silica nanoparticles using dye discoloration and contact angle test
Downloads
Published
DOI:
https://doi.org/10.58414/SCIENTIFICTEMPER.2025.16.1.13Keywords:
Titanium dioxide, Silica dioxide, Photocatalytic activity, Sol-gel analysis, Surface wettability, Contact angle analysis.Dimensions Badge
Issue
Section
License
Copyright (c) 2025 The Scientific Temper

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
This work was done in order to determine the efficiency of TiO₂ and SiO₂ nanoparticles for photocatalytic activity by using contact angle measurements and dye degradation tests. Covering the mechanism of photocatalysis, which means the promotion of a chemical reaction through the aid of light, the focus here is to apply photocatalysis for the elimination of organic pollutants in water, which is now finding more uses in environmental regeneration. Despite TiO₂-and SiO₂-based nanoparticles may be attractive photocatalysts, there are few reports comparing their efficiency. Both samples were prepared using the sol-gel method; their morphological studies were carried out using a scanning electron microscope attached to an energy dispersion X-ray system. The photocatalytic tests were performed using UV light which was used in the degradation of Rhodamine B and Methylene Blue dyes and the reaction kinetics and efficiency of the photocatalytic process were determined with the help of a UV-visible spectrophotometer. Moreover, the determined hysteresis contact angle described the extent of hydrophilicity or hydrophobicity that resulted from nanoparticles affecting the photocatalytic behavior. As for photocatalytic performance, TiO₂ nanoparticles provided more reactive area and a stronger capacity to generate electron holes when exposed to UV light than SiO₂ so that TiO₂ showed higher photocatalytic activity. The surfaces of TiO₂ NSs coated with a thin layer of TiO₂ showed higher hydrophilicity that enhanced the photocatalytic properties. Not only does this work extend the knowledge on the enhanced photocatalytic performance of TiO₂ in environmental applications, but it also offers valuable guidelines for further research on nanoparticle-mediated photocatalytic applications, by focusing on the connection between surface wettability and photocatalytic efficiency that seems to be underemphasized.Abstract
How to Cite
Downloads
Similar Articles
- Arun Kumar Sharma, Vinay Sharma, Jyoti Saxena, Bindu Yadav, Afroz Alam, Anand Prakash, Partial purification and characterization of protease enzyme from soil borne bacteria , The Scientific Temper: Vol. 7 No. 1&2 (2016): THE SCIENTIFIC TEMPER
- Kapil ahuja, Ekta Rani, Soniya Devi, Exploring the dynamic landscape of environmental, social, and governance literature by using bibliometric analysis , The Scientific Temper: Vol. 15 No. 01 (2024): The Scientific Temper
- Aditi Malik, Rishi Chaudhry, Mohit, Urvashi Suryavanshi, Mapping the landscape of political advertising research: A comprehensive bibliometric analysis , The Scientific Temper: Vol. 15 No. 04 (2024): The Scientific Temper
- Rajni Thapa, S. Victor Devasirvadam, Effect of Aloe vera gel versus olive oil in the prevention of pressure ulcers among bedridden patients: A pilot study , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
- Sreenath M.V. Reddy, D. Annapurna, Anand Narasimhamurthy, Influence node analysis based on neighborhood influence vote rank method in social network , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
- Jyoti Vishwakarma, Sunil Kumar, Mapping Research on ESG Disclosure and Firm Performance: A Systematic Bibliometric Analysis , The Scientific Temper: Vol. 16 No. 09 (2025): The Scientific Temper
- Sangeeta Modi, P Usha, Fault analysis in hybrid microgrid for developing a suitable protection scheme , The Scientific Temper: Vol. 14 No. 01 (2023): The Scientific Temper
- Jasmine A, G. Arul Selvi, Exploring Behavioural Dimensions of Social Media Engagement: An Exploratory Factor Analysis Among College Youth , The Scientific Temper: Vol. 17 No. 02 (2026): The Scientific Temper
- Sukhada S. Prabhu, Anuprita M. Thakur, Evaluating the Responsiveness of Hindi version of International Physical Activity Questionnaire-Long Form (IPAQ-LF) in healthy adults. , The Scientific Temper: Vol. 14 No. 04 (2023): The Scientific Temper
- Chetna Dhull, Asha ., Impact of crop insurance and crop loans on agricultural growth in Haryana: A factor analysis approach , The Scientific Temper: Vol. 15 No. 01 (2024): The Scientific Temper
<< < 1 2 3 4 5 6 7 8 9 10 > >>
You may also start an advanced similarity search for this article.

