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UV Light–Induced Aggregation of Titania Submicron Particles

机译:紫外线诱导的二氧化钛亚微米颗粒聚集

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摘要

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.
机译:在这项研究中,研究了在紫外线(UV)照射下,去离子(DI)水中的TiO2(金红石和锐钛矿)亚微米颗粒的聚集。尽管在黑暗中未观察到聚集,但是金红石和锐钛矿亚微米颗粒在施加紫外线后开始聚集,并分别在约2小时和8.4小时后停止聚集。已经证明,紫外光直接减轻了TiO2的颗粒迁移率,从而导致Zeta电位的中和作用。还观察到,在紫外线辐射下,金红石颗粒的聚集比锐钛矿颗粒快得多,这表明所制备的金红石的Zeta电位小于去离子(DI)水中的锐钛矿的Zeta电位。此外,使用Derjaguin–Landau–Verwey–Overbeek(DLVO)模型模拟​​了金红石和锐钛矿颗粒的相互作用能。结果表明,金红石的势垒能量从118.2 kBT显着降低到33.6 kBT,锐钛矿的势垒能量从333.5 kBT降低到46.1 kBT,这进一步证实了紫外线辐射对金红石和锐钛矿亚微米粒子聚集动力学的显着影响。这项工作提出了对光控制的亚微米颗粒的聚集机理的进一步理解,并在环境修复中具有广阔的应用前景。

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