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聚苯胺/二氧化钛异质结构的紫外光和可见光诱导光催化效率

UV and Visible Light-Induced Photocatalytic Efficiency of Polyaniline/Titanium Dioxide Heterostructures.

作者信息

Fu Yongqiang, Janczarek Marcin

机构信息

Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, 60-965 Poznan, Poland.

出版信息

Molecules. 2024 Dec 25;30(1):23. doi: 10.3390/molecules30010023.

Abstract

The concept of using polyaniline/titanium dioxide heterostructures as efficient photocatalysts is based on the synergistic effect of conducting polymer and metal oxide semiconductors. Due to inconclusive literature reports, the effect of different polyaniline/TiO ratios on photocatalytic activity under UV and visible light was investigated. In most papers, non-recommended dyes are used as model compounds to evaluate visible light activity. Therefore, colorless phenol was used instead of dyes in this study to clarify the real visible light-induced photocatalytic activity of polyaniline/TiO composites. This publication also includes a discussion of whether materials derived from bulk (non-nanostructured) polyaniline and TiO by the standard in situ oxidative polymerization method are suitable candidates for promising photocatalytic materials. The evaluation of photocatalytic activity was performed in both UV and visible light systems. X-ray diffraction and UV-Vis diffuse reflectance spectroscopy methods were applied to characterize the obtained samples. Obtained polyaniline (pure and in composites) was identified as emeraldine salt. In the UV system, none of the prepared samples with different polyaniline-titania ratios had activity better than reference P25 titania. It has been observed that the presence of polyaniline adversely affects the photocatalytic properties, as the polyaniline layer covering the titania surface can shield the UV light transmission by blocking the contact between the TiO surface and organic molecules. In the case of using visible light, no synergies have been observed between polyaniline and titania either. The photodegradation efficiencies of the most active samples were similar to those of pure polyaniline. In conclusion, in order to obtain efficient polyaniline/titania photocatalysts active in UV and/or visible light, it is necessary to take into account the morphological and surface properties of both components.

摘要

将聚苯胺/二氧化钛异质结构用作高效光催化剂的概念基于导电聚合物与金属氧化物半导体的协同效应。由于文献报道尚无定论,因此研究了不同聚苯胺/二氧化钛比例对紫外光和可见光下光催化活性的影响。在大多数论文中,使用未推荐的染料作为模型化合物来评估可见光活性。因此,本研究中使用无色苯酚代替染料,以阐明聚苯胺/二氧化钛复合材料真正的可见光诱导光催化活性。本出版物还讨论了通过标准原位氧化聚合法由块状(非纳米结构)聚苯胺和二氧化钛衍生的材料是否是有前景的光催化材料的合适候选物。在紫外光和可见光系统中均进行了光催化活性评估。应用X射线衍射和紫外-可见漫反射光谱法对所得样品进行表征。所获得的聚苯胺(纯的和复合材料中的)被鉴定为翡翠盐。在紫外光系统中,不同聚苯胺-二氧化钛比例的制备样品均没有比参比P25二氧化钛更好的活性。据观察,聚苯胺的存在会对光催化性能产生不利影响,因为覆盖在二氧化钛表面的聚苯胺层会通过阻止二氧化钛表面与有机分子之间的接触来屏蔽紫外光透射。在使用可见光的情况下,聚苯胺和二氧化钛之间也未观察到协同作用。活性最高的样品的光降解效率与纯聚苯胺的光降解效率相似。总之,为了获得在紫外光和/或可见光下具有活性的高效聚苯胺/二氧化钛光催化剂,有必要考虑两种组分的形态和表面性质。

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