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首页> 外文期刊>Journal of Materials Science >Enhanced photocatalytic activity of TiO2@mercapto-functionalized silica toward colored organic dyes
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Enhanced photocatalytic activity of TiO2@mercapto-functionalized silica toward colored organic dyes

机译:TiO2 @巯基官能化二氧化硅对有色有机染料的增强光催化活性

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摘要

Core-shell-type TiO2@mercaptopropyl-functionalized silica (MPS) particles were prepared for enhanced photocatalytic performance of TiO2. The MPS particles were adopted in the composite-type photocatalyst design so as to enhance the photo-catalytic activity through the chemical interaction between chemically modified substrate particles and organic dye molecules, although they do not have photocatalytic activity. Three organic dyes, rhodamine B, rhodamine 6G, and methyl orange, were selected for testing dye adsorption characteristics and photocatalytic activities of the TiO2@MPS particles, commercial P25, and unsupported TiO2 nanosols. Rhodamine B and rhodamine 6G dyes were adsorbed much more on the TiO2@MPS particles than P25, by factors of 6 and 43, respectively, while methyl orange molecules were adsorbed more readily on P25. Such difference in the dye adsorption characteristics of the two photocatalysts may be related with available functional groups and the dyes. This would lead to enhanced photocatalytic degradation of the dyes because of combined chemical and physical adsorption mechanisms. Toward the two rhodamine dyes, the TiO2@MPS particles show significantly enhanced photocatalytic activity per TiO2 than P25 under both UV and visible light irradiation. Especially under visible irradiation, the degradation rate constants of rhodamine B and rhodamine 6G molecules per TiO2 were higher, 18 and 45 times, respectively, for the TiO2@MPS particles than for P25. Toward methyl orange dye, the degradation rate constant per TiO2 was lower for the TiO2@MPS particles than for P25 under UV irradiation but it was eight times higher under visible irradiation. The TiO2@MPS particles were recyclable and their photocatalytic activity did not change at all at least for three repeated photo-degradation tests.
机译:制备了核壳型TiO2巯基丙基官能化二氧化硅(MPS)颗粒,以提高TiO2的光催化性能。 MPS颗粒被用于复合型光催化剂设计中,尽管它们不具有光催化活性,但通过化学修饰的底物颗粒与有机染料分子之间的化学相互作用来增强光催化活性。选择了三种有机染料,若丹明B,若丹明6G和甲基橙,以测试TiO2 @ MPS颗粒,市售P25和无载体TiO2纳米溶胶的染料吸附特性和光催化活性。罗丹明B和罗丹明6G染料在TiO2 @ MPS颗粒上的吸附量分别是P25的6和43倍,而甲基橙分子在P25上的吸附更容易。两种光催化剂的染料吸附特性的这种差异可能与可用的官能团和染料有关。由于化学和物理吸附机制的结合,这将导致染料的光催化降解增强。对于两种若丹明染料,在紫外线和可见光照射下,TiO2 @ MPS颗粒的光催化活性均显着高于P25。尤其是在可见光照射下,若TiO2 @ MPS颗粒的每克TiO2的若丹明B和若丹明6G分子的降解速率常数分别比P25高18倍和45倍。对于甲基橙染料,在紫外线照射下,TiO2 @ MPS颗粒的每TiO2降解速率常数比P25低,但在可见光照射下则是P25。 TiO2 @ MPS颗粒是可回收的,并且至少在三个重复的光降解测试中,它们的光催化活性完全没有改变。

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