Abstract

The role of oxygen-based functional groups in the photoluminescence of dehydrated carbon dots (DCs) and the adsorption mechanism of dye molecules onto the surface of DC is investigated. DC were prepared from orange peel for the first time via the chemical dehydration effect of sulfuric and phosphoric acid at 180 oC. We compared the emission spectra of DCs in different solvents in great detail. The solvatochromism of DC in different solvents is discussed. The role of oxygen-based functional groups in the light emission process is examined. Adsorption of methylene blue (MB) on the surface of DC was studied at different contact times, pH, concentrations, and temperatures. In this work, we used Langmuir and Freundlich adsorption models for the analysis. Sorption kinetic data were found to fit well with the pseudo-second-order model. Our results also showed increased MB adsorption capability with temperature. The results are essential for the application of CQDs, such as in wastewater treatment. Keywords: Photoluminescence; Adsorption; Solvatochromism; Carbon dots; Methylene blue (MB).

Keywords

Publication details

DOI
10.53539/squjs.vol29iss3pp59-77
Journal
Sultan Qaboos University Journal for Science, 29(3), 59-77
Publisher
Sultan Qaboos University
Open access
Gold open access
License
CC BY-ND 4.0

Cite this article

APA 7

Al Farsi, B., Al Shidhani, H., Sofi, R. S., El-Shafey, E. S. I., Al-Ruqeishi, Z. B., Al-Hosni, A. S., Issac, A., Nabhan, A. A. J., Al Kindi, M., & Abou‐Zied, O. K. (2024). Photoluminescence and Dye Adsorption Mechanism of Dehydrated Carbon Quantum Dots. Sultan Qaboos University Journal for Science, 29(3), 59-77. https://doi.org/10.53539/squjs.vol29iss3pp59-77

MLA 9

Al Farsi, Basim, et al. "Photoluminescence and Dye Adsorption Mechanism of Dehydrated Carbon Quantum Dots." Sultan Qaboos University Journal for Science, vol. 29, no. 3, 2024, pp. 59-77. https://doi.org/10.53539/squjs.vol29iss3pp59-77.

Chicago (author–date)

Al Farsi, Basim, Hamood Al Shidhani, R.G. Sumesh Sofi, El-Said I. El-Shafey, Zainab B. Al-Ruqeishi, Abdullah S. Al-Hosni, Abey Issac, A. A. J. Nabhan, M. Al Kindi, and Osama K. Abou‐Zied. 2024. "Photoluminescence and Dye Adsorption Mechanism of Dehydrated Carbon Quantum Dots." Sultan Qaboos University Journal for Science 29 (3): 59-77. https://doi.org/10.53539/squjs.vol29iss3pp59-77.

Harvard

Al Farsi, B., Al Shidhani, H., Sofi, R. S., El-Shafey, E. S. I., Al-Ruqeishi, Z. B., Al-Hosni, A. S., Issac, A., Nabhan, A. A. J., Al Kindi, M. and Abou‐Zied, O. K. (2024) 'Photoluminescence and Dye Adsorption Mechanism of Dehydrated Carbon Quantum Dots', Sultan Qaboos University Journal for Science, 29(3), pp. 59-77. doi:10.53539/squjs.vol29iss3pp59-77.

Vancouver

Al Farsi B, Al Shidhani H, Sofi RS, El-Shafey ESI, Al-Ruqeishi ZB, Al-Hosni AS, et al. Photoluminescence and Dye Adsorption Mechanism of Dehydrated Carbon Quantum Dots. Sultan Qaboos University Journal for Science. 2024;29(3):59-77. doi:10.53539/squjs.vol29iss3pp59-77

IEEE

B. Al Farsi, H. Al Shidhani, R. S. Sofi, E. S. I. El-Shafey, Z. B. Al-Ruqeishi, A. S. Al-Hosni, A. Issac, A. A. J. Nabhan, M. Al Kindi, and O. K. Abou‐Zied, "Photoluminescence and Dye Adsorption Mechanism of Dehydrated Carbon Quantum Dots," Sultan Qaboos University Journal for Science, vol. 29, no. 3, pp. 59-77, 2024, doi: 10.53539/squjs.vol29iss3pp59-77.