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影响二氧化钛薄膜上染料吸附的条件及其对染料光降解速率影响的研究。

Study of the conditions affecting dye adsorption on titania films and of their effect on dye photodegradation rates.

作者信息

Strataki Nikoleta, Bekiari Vlasoula, Lianos Panagiotis

机构信息

Engineering Science Department, University of Patras, 26500 Patras, Greece.

出版信息

J Hazard Mater. 2007 Jul 31;146(3):514-9. doi: 10.1016/j.jhazmat.2007.04.052. Epub 2007 Apr 20.

Abstract

Nanocrystalline titania films have been deposited on glass slides by the sol-gel technique in the presence of surfactant, which plays the role of template of the nanostructure. Several different dyes, both anionic and cationic, have been adsorbed on these films from aqueous solutions. Some of these dyes were adsorbed at large quantities some at lower quantities. Some of them were adsorbed in monomeric form and others formed aggregates. Aggregates are easily distinguished by absorption spectrophotometry, since absorption of light is observed at a different wavelength than monomer absorption in a dilute solution. In all cases, aggregation demonstrated a hypsochromic shift, indicating repulsive interactions, which are justified in view of the fact that titania surface is charged and that adsorbed molecules are aligned in parallel. The above titania films are hydroxylated. Therefore, cationic dyes were readily adsorbed. Anionic dyes could be adsorbed only from aqueous solutions brought at low pH. Photodegradation rates of adsorbed dyes were generally fast since these films are efficient photocatalysts. Nevertheless, photodegradation of an adsorbed dye was faster when the quantity of the dye was smaller. When the adsorbed dyes formed aggregates, aggregation had adverse effect on photodegradation rates.

摘要

在表面活性剂存在的情况下,通过溶胶 - 凝胶技术在载玻片上沉积了纳米晶二氧化钛薄膜,表面活性剂起到纳米结构模板的作用。从水溶液中已将几种不同的染料(包括阴离子染料和阳离子染料)吸附到这些薄膜上。其中一些染料大量吸附,一些则少量吸附。它们中的一些以单体形式吸附,而另一些则形成聚集体。聚集体很容易通过吸收分光光度法区分,因为在与稀溶液中单体吸收不同的波长处观察到光吸收。在所有情况下,聚集都表现出蓝移,表明存在排斥相互作用,鉴于二氧化钛表面带电且吸附分子平行排列这一事实,这是合理的。上述二氧化钛薄膜是羟基化的。因此,阳离子染料很容易被吸附。阴离子染料只能从低pH值的水溶液中吸附。由于这些薄膜是高效的光催化剂,吸附染料的光降解速率通常很快。然而,当染料量较小时,吸附染料的光降解更快。当吸附的染料形成聚集体时,聚集对光降解速率有不利影响。

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