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Polymer-Titania Composites for Photocatalysis of Organics in Aqueous Environments

机译:聚合物 - 二氧化钛复合材料用于水环境中有机物的光催化

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Microcomposites composed of titanium dioxide nanoparticles embedded within cross-linked, thermally responsive microgels of poly(N-isopropylacrylamide) were prepared. These microcomposites showed rapid sedimentation, which is useful for gravity separation of the titania nanoparticles in applications such as environmental remediation. To investigate the degradation kinetics using these microcomposites in aqueous suspensions, methyl orange was employed as a model contaminant. The decline in the methyl orange concentration was monitored using UV-Vis spectroscopy. Degradation of methyl orange was also measured using only nanoparticles TiO_2 (Degussa P25) for comparison with the microcomposites. Experiments were performed at different pH conditions that spanned acidic, neutral, and basic conditions to gain insight into the interplay of TiO_2 surface charge, ionization of the polyelctrolyte chains in the microcomposites, and ionization of the methyl orange.
机译:制备由多氧化钛纳米颗粒组成的微型复合材料,制备聚(N-异丙基丙烯酰胺)的交联热响应微凝胶中。这些微型复合材料显示出快速沉淀,这对于钛菊胺纳米粒子在环境修复等应用中的重力分离是有用的。为了研究利用这些微结合在水性悬浮液中的降解动力学,使用甲基橙作为模型污染物。使用UV-Vis光谱监测甲基橙浓度的下降。仅使用纳米颗粒TiO_2(Degussa P25)测量甲基橙的降解,以与微孔复合材料进行比较。实验在不同的pH条件下进行,所述pH条件是跨越酸性,中性和基本条件的,以获得洞察TiO_2表面电荷的相互作用,微孔复合材料中的聚蛋体链的电离,以及甲基橙的电离。

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