He Chun, Shu Dong, Xiong Ya, Zhu Xihai, Li Xiangzhong
School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, PR China.
Chemosphere. 2006 Apr;63(2):183-91. doi: 10.1016/j.chemosphere.2005.08.048. Epub 2005 Nov 8.
Two types of platinised TiO2 films, i.e., Pt-TiO2/ITO and Pt(TiO2)/ITO, were prepared by a procedure of dip-coating and subsequent photo-deposition, and photo-deposition and subsequent dip-coating, respectively. They were well characterized by DRS, XRD spectra, SEM microscopy and photoelectrochemical measurement. Their photocatalytic, dark catalytic and photoelectrocatalytic activities were investigated using formic acid as a model organic pollutants. Compared with pure TiO2/ITO film, the photocatalytic activity of the platinised TiO2 films were apparently improved. However, the improvement was considerably dependent on the preparation method of these films. Pt-TiO2/ITO not only possessed higher photocatalytic activity but also showed a dark catalytic activity towards HCOOH degradation. As a sequence, it was first emphasized that the dark catalytic effect of Pt-TiO2/ITO was partly responsible for degradation of formic acid in the photocatalytic oxidation process. Although the Pt(TiO2)/ITO film does not exhibit the dark catalytic activity, its photocatalytic degradation efficiencies towards HCOOH are higher than that of Pt-TiO2/ITO film. Therefore, in view of enhanced photocatalytic activity, the Pt(TiO2)/ITO was more favored than Pt-TiO2/ITO film.
通过浸涂及后续光沉积、光沉积及后续浸涂的方法,分别制备了两种铂化二氧化钛薄膜,即Pt-TiO2/ITO和Pt(TiO2)/ITO。通过漫反射光谱(DRS)、X射线衍射(XRD)谱、扫描电子显微镜(SEM)和光电化学测量对它们进行了充分表征。以甲酸作为典型有机污染物,研究了它们的光催化、暗催化和光电催化活性。与纯TiO2/ITO薄膜相比,铂化二氧化钛薄膜的光催化活性明显提高。然而,这种提高在很大程度上取决于这些薄膜的制备方法。Pt-TiO2/ITO不仅具有较高的光催化活性,而且对HCOOH降解表现出暗催化活性。因此,首先强调Pt-TiO2/ITO的暗催化作用是光催化氧化过程中甲酸降解的部分原因。虽然Pt(TiO2)/ITO薄膜没有表现出暗催化活性,但其对HCOOH的光催化降解效率高于Pt-TiO2/ITO薄膜。因此,鉴于光催化活性增强,Pt(TiO2)/ITO比Pt-TiO2/ITO薄膜更具优势。