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高缺陷黑色纳米二氧化钛:通过脉冲激光烧蚀制备及应用

Highly Defective Dark Nano Titanium Dioxide: Preparation via Pulsed Laser Ablation and Application.

作者信息

Fakhrutdinova Elena D, Shabalina Anastasiia V, Gerasimova Marina A, Nemoykina Anna L, Vodyankina Olga V, Svetlichnyi Valery A

机构信息

Laboratory of Advanced Materials and Technology, Tomsk State University, Tomsk 634050, Russia.

Laboratory of Biophotonics, Siberian Federal University, Krasnoyarsk 660041, Russia.

出版信息

Materials (Basel). 2020 Apr 28;13(9):2054. doi: 10.3390/ma13092054.

Abstract

The development of methods to synthesize and study the properties of dark titania is of the utmost interest due to prospects for its use, primarily in photocatalysis when excited by visible light. In this work, the dark titania powder was prepared by pulsed laser ablation (Nd:YAG laser, 1064 nm, 7 ns) in water and dried in air. To study the changes occurring in the material, the thermal treatment was applied. The structure, composition, and properties of the obtained powders were studied using transmission electron microscopy, low-temperature N adsorption/desorption, X-ray diffraction, thermogravimetry/differential scanning calorimetry, X-ray photoelectron, Raman and UV-vis spectroscopies, and photoluminescence methods. The processes occurring in the initial material upon heating were studied. The electronic structure of the semiconductor materials was investigated, and the nature of the defects providing the visible light absorption was revealed. The photocatalytic and antibacterial activities of the materials obtained were also studied. Dark titania obtained via laser ablation in liquid was found to exhibit catalytic activity in the phenol photodegradation process under visible light (> 420 nm) and showed antibacterial activity against and bacteriostatic effect towards

摘要

由于暗态二氧化钛的应用前景,尤其是在可见光激发下的光催化领域,合成和研究其性质的方法的开发具有极大的吸引力。在这项工作中,通过在水中进行脉冲激光烧蚀(Nd:YAG激光,1064nm,7ns)制备了暗态二氧化钛粉末,并在空气中干燥。为了研究材料中发生的变化,进行了热处理。使用透射电子显微镜、低温N吸附/脱附、X射线衍射、热重分析/差示扫描量热法、X射线光电子能谱、拉曼光谱和紫外-可见光谱以及光致发光方法研究了所得粉末的结构、组成和性质。研究了初始材料加热时发生的过程。研究了半导体材料的电子结构,揭示了提供可见光吸收的缺陷的性质。还研究了所得材料的光催化和抗菌活性。发现通过液体中的激光烧蚀获得的暗态二氧化钛在可见光(>420nm)下的苯酚光降解过程中表现出催化活性,并对……表现出抗菌活性和抑菌作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f669/7254401/911508ce47c7/materials-13-02054-g001.jpg

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