UV Light⁻Induced Aggregation of Titania Submicron Particles. 2016

Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
Department of Mechanical & Aerospace Engineering, Old Dominion University, Norfolk, VA 23529, USA. czhou001@odu.edu.

In this study, aggregation of TiO₂ (rutile and anatase) submicron particles in deionized (DI) water under ultra-violet (UV) light irradiation was investigated. While no aggregation was observed in the dark, rutile and anatase submicron particles started aggregating upon application of UV light and ceased aggregation in about 2 and 8.4 h, respectively. It has been demonstrated that UV light directly mitigated the particle mobility of TiO₂, resulting in a neutralization effect of the Zeta potential. It was also observed that rutile particles aggregated much faster than anatase particles under UV radiation, indicating that the Zeta potential of as-prepared rutile is less than that of anatase in deionized (DI) water. In addition, the interaction energy of rutile and anatase particles was simulated using the Derjaguin⁻Landau⁻Verwey⁻Overbeek (DLVO) model. The results showed a significant reduction of barrier energy from 118.2 kBT to 33.6 kBT for rutile and from 333.5 kBT to 46.1 kBT for anatase, respectively, which further validated the remarkable influence of UV irradiation on the aggregation kinetics of rutile and anatase submicron particles. This work presents a further understanding of the aggregation mechanism of light-controlled submicron particles and has a promising potential application in environmental remediation.

UI MeSH Term Description Entries

Related Publications

Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
May 2009, Free radical biology & medicine,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
June 2009, Journal of colloid and interface science,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
September 2018, Environmental science & technology,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
January 1989, Acta physiologica Polonica,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
January 2019, RSC advances,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
November 2003, IEE proceedings. Nanobiotechnology,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
September 2022, Environmental science and pollution research international,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
February 2016, Physical chemistry chemical physics : PCCP,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
October 2019, Water research,
Can Zhou, and Yashar Bashirzadeh, and Timothy A Bernadowski, and Xiaoyu Zhang
November 2018, Analytical chemistry,
Copied contents to your clipboard!