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Preparation of Nitrogen-Doped Mesoporous TiO2/RGO Composites and Its Application to Visible Light-Assisted Photocatalytic Degradation

机译:氮掺杂介孔TiO2 / Rgo复合材料的制备及其在可见光辅助光催化降解中的应用

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A series of nitrogen-doped mesoporous TiO2 nanomaterials and nitrogen-doped mesoporous TiO2/reduced graphene oxide (RGO) composites were successfully prepared by hydrothermal method using triammonium citrate as the nitrogen source. The effects of nitrogen and graphene oxide (GO) dopping on the photocatalytic properties of the TiO2 were investigated to optimize preparation conditions. The results showed that all prepared samples were mainly composed of the anatase phase and possessed a mesoporous structure. The use of the triammonium citrate not only significantly increased the specific surface area of the synthesized samples but also caused the partial reduction of GO to RGO, leading to further increase of the specific surface area and the improvement of quantum efficiency of the photogenerated electrons. All synthesized samples showed superior photocatalytic performance for methyl orange solution. Among them, the NMT/RGO-1.8-10 was found to be the best; the degradation rate of methyl orange solution on the sample reached 100% in 30 minutes under visible light irradiation.
机译:通过使用二柠檬酸铵作为氮源,成功地制备了一系列氮掺杂的介孔TiO2纳米材料和氮掺杂的介孔TiO2 /还原氧化物(RGO)复合材料。研究了氮气和石墨烯氧化物(GO)对TiO 2的光催化性质的影响,优化制备条件。结果表明,所有制备的样品主要由锐钛矿相组成并具有中孔结构。使用柠檬酸酯的二氨基鎓的使用不仅显着增加了合成样品的比表面积,而且也导致转到RGO的部分减少,从而进一步增加了比表面积和上光晶体电子的量子效率的提高。所有合成样品显示出卓越的光催化性能对甲基橙溶液。其中,发现NMT / RGO-1.8-10是最好的;在可见光照射下,样品上甲基橙溶液的降解率达到100%。

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