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新型喹唑啉衍生物对TiO微球的光敏化作用,作为可见光捕获天线用于增强罗丹明B的光降解。

Photosensitization of TiO microspheres by novel Quinazoline-derivative as visible-light-harvesting antenna for enhanced Rhodamine B photodegradation.

作者信息

Hamza Mahmoud Adel, Rizk Sameh A, Ezz-Elregal Ezz-Elregal M, El-Rahman Shaimaa A Abd, Ramadan Sayed K, Abou-Gamra Zeinab M

机构信息

Chemistry Department, Faculty of Science, Ain-Shams University, Abbassia, Cairo, Egypt.

出版信息

Sci Rep. 2023 Aug 9;13(1):12929. doi: 10.1038/s41598-023-38497-9.

Abstract

Water pollution is one of the global threats severely affecting our planet and human health. Organic textile dyes are one of the common organic water pollutants that are presentient to degradation by traditional physical methods. Semiconductor-assisted photocatalysis is considered a green, efficient, and sustainable technology for wastewater treatment. To maximize the efficient utilization of solar radiation, it is of pivotal significance to explore novel organic molecules to be employed as efficient dye sensitizers for wide-bandgap semiconductors to extend their performance to the Visible-light region. Hence, in this work, we are proposing the design and synthesis of novel structures of QAD molecule as a dye photosensitizer with extended visible light absorptivity due to the extended π-π/n-π conjugations, to promote the performance of TiO nanoparticles to the visible-light region and enhance the charge separation. The physicochemical characterizations confirmed the successful synthesis of QAD, TiO and QAD/TiO samples with the proposed structures. The anchoring of QAD molecules on the surface of TiO caused a substantial improvement in the optical characteristics of TiO as well as overcoming its common drawbacks by decreasing its bandgap energy to 2.6 eV, a remarkable reduction of PL intensity indicating reducing the e-h recombination and enhancing the charge separation, and creation of efficient visible light-harvesting antenna in the range of 400-600 nm. Besides, the QAD/TiO sample achieved a 3-fold enhancement in the observed rate constant of the photodegradation of Rhodamine B dye compared to the bare TiO. The parameters affecting the photodegradation process were optimized and the sample displayed outstanding stability after 4 consecutive cycles. Finally, the effect of the scavengers was investigated and [Formula: see text] was proposed to be the most reactive species and the mechanism of the enhancement was suggested based on the electron injection from the QAD's HOMO level to the TiO's CB. Finally, this work opens the door for various studies for the investigation of the proposed structures or similar structures in various photocatalytic/biomedical applications.

摘要

水污染是严重影响我们星球和人类健康的全球威胁之一。有机纺织染料是常见的有机水污染物之一,传统物理方法难以将其降解。半导体辅助光催化被认为是一种用于废水处理的绿色、高效且可持续的技术。为了最大限度地有效利用太阳辐射,探索新型有机分子作为宽带隙半导体的高效染料敏化剂以将其性能扩展到可见光区域具有至关重要的意义。因此,在这项工作中,我们提出设计和合成具有新型结构的QAD分子作为染料光敏剂,由于其π-π/n-π共轭的扩展,具有扩展的可见光吸收能力,以促进TiO纳米颗粒在可见光区域的性能并增强电荷分离。物理化学表征证实成功合成了具有所提出结构的QAD、TiO和QAD/TiO样品。QAD分子锚定在TiO表面导致TiO的光学特性有显著改善,同时克服了其常见缺点,将其带隙能量降低至2.6 eV,PL强度显著降低,表明电子-空穴复合减少且电荷分离增强,并在400-600 nm范围内创建了高效的可见光捕获天线。此外,与纯TiO相比,QAD/TiO样品在罗丹明B染料光降解的观测速率常数方面提高了3倍。优化了影响光降解过程的参数,并且该样品在连续4个循环后表现出出色的稳定性。最后,研究了清除剂的作用,提出[公式:见正文]是最具反应活性的物种,并基于从QAD的HOMO能级到TiO的CB的电子注入提出了增强机制。最后,这项工作为在各种光催化/生物医学应用中研究所提出的结构或类似结构的各种研究打开了大门。

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