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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Synthesis and characterization of carbon-covered alumina (CCA) supported TiO _2 nanocatalysts with enhanced visible light photodegradation of Rhodamine B
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Synthesis and characterization of carbon-covered alumina (CCA) supported TiO _2 nanocatalysts with enhanced visible light photodegradation of Rhodamine B

机译:罗丹明B可见光光降解性能增强的碳载氧化铝(CCA)负载TiO _2纳米催化剂的合成与表征

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The anatase phase of titania (TiO _2) nanophotocatalysts was prepared using a modified sol gel process and thereafter embedded on carbon-covered alumina supports. The carbon-covered alumina (CCA) supports were prepared via the adsorption of toluene 2,4-diisocyanate (TDI) on the surface of the alumina. TDI was used as the carbon source for the first time for the carbon-covered alumina support system. The adsorption of TDI on alumina is irreversible; hence, the resulting organic moiety can undergo pyrolysis at high temperatures resulting in the formation of a carbon coating on the surface of the alumina. The TiO _2 catalysts were impregnated on the CCA supports. X-ray diffraction analysis indicated that the carbon deposited on the alumina was not crystalline and also showed the successful impregnation of TiO _2 on the CCA supports. In the Raman spectra, it could be deduced that the carbon was rather a conjugated olefinic or polycyclic hydrocarbons which can be considered as molecular units of a graphitic plane. The Raman analysis of the catalysed CCAs showed the presence of both the anatase titania and D and G band associated with the carbon of the CCAs. The scanning electron microscope micrographs indicated that the alumina was coated by a carbon layer and the energy dispersive X-ray spectra showed the presence of Al, O and C in the CCA samples, with the addition of Ti for the catalyst impregnated supports. The Brunauer Emmet and Teller surface area analysis showed that the incorporating of carbon on the alumina surface resulted in an increase in surface area, while the impregnation with TiO 2 resulted in a further increase in surface area. However, a decrease in the pore volume and diameter was observed. The photocatalytic activity of the nanocatalysts was studied for the degradation of Rhodamine B dye. The CCA-TiO _2 nanocatalysts were found to be more photocatalytically active under both visible and UV light irradiation compared to the free TIO _2 nanocatalysts.
机译:使用改进的溶胶凝胶法制备了二氧化钛(TiO _2)纳米光催化剂的锐钛矿相,然后将其包埋在碳覆盖的氧化铝载体上。通过将甲苯2,4-二异氰酸酯(TDI)吸附在氧化铝表面上来制备碳覆盖的氧化铝(CCA)载体。 TDI首次用作碳覆盖的氧化铝载体系统的碳源。 TDI在氧化铝上的吸附是不可逆的。因此,所得的有机部分可以在高温下进行热解,从而在氧化铝表面上形成碳涂层。 TiO _2催化剂浸渍在CCA载体上。 X射线衍射分析表明,沉积在氧化铝上的碳不是结晶的,并且还表明在CCA载体上成功地浸渍了TiO _2。在拉曼光谱中,可以推论出碳是共轭烯烃或多环烃,可以认为是石墨平面的分子单元。催化CCAs的拉曼分析表明,同时存在锐钛矿二氧化钛和与CCAs碳相关的D和G带。扫描电子显微镜显微照片表明,氧化铝被碳层覆盖,能量色散X射线光谱表明,在CCA样品中存在Al,O和C,并添加了Ti作为催化剂浸渍的载体。 Brunauer Emmet和Teller的表面积分析表明,氧化铝表面上碳的掺入导致表面积增加,而TiO 2的浸渍导致表面积进一步增加。然而,观察到孔体积和直径的减小。研究了纳米催化剂对罗丹明B染料降解的光催化活性。发现CCA-TiO _2纳米催化剂与游离的TIO _2纳米催化剂相比在可见光和紫外光照射下具有更高的光催化活性。

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