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作 者:曹亚安[1,2] 陈咏梅[1,2] 管自生[1,2] 马颖 吴志芸[1,2] 白玉白 李铁津 姚建年[1,2]
机构地区:[1]中国科学院感光化学研究所 [2]吉林大学化学系
出 处:《感光科学与光化学》1999年第2期100-103,共4页Photographic Science and Photochemistry
基 金:国家自然科学基金;中科院重大基础研究项目
摘 要:TiO2纳米粒子膜催化剂光催化降解水中污染物,与粉末相比具有可重复使用、易回收等优点,近年来,在光化学领域受到人们的高度重视[1~3].膜催化剂的表面性质与其光催化活性直接相关,研究这些性质能够为研制、开发高效催化剂提供理论依据.本文采用TiCl4水...TiO2 nanoparticle film catalysts have been prepared in acid and basic conditions respectively, by method of the hydrolysis of TiCl4. Their surface microstructures and surface energy levels were tested by infrared (IR) spectra and electrical field induced surface photovoltage spectra (EFISPS). The results demonstrate that surface properties of the two kinds of TiO2 films are different. A new peak at 1350 cm-1 due to superoxide radical appears in the IR spectrum of TiO2 powder prepared by basic condition, while it is not found in the one prepared by acidic condition. Furthermore, a new peak at 390nm attributed to Ti3+ surface state is also found in EFISPS of the film obtained from basic colloid, whereas the peak disappears in EFISPS of the film obtained from acidic colloid. Photodegradation of phenol shows that photocatalytic activity is affected by surface properties of the film. Photocatalytic activity of the latter is better than that of the former confirms that Ti3+ reduces photocatalytic activity of catalyst.
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