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Mesoporous TiO2/Carbon Beads: One-Pot Preparation and Their Application in Visible-Light-Induced Photodegradation

机译:介孔TiO2 /碳珠:一锅法制备及其在可见光诱导的光降解中的应用

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摘要

Mesoporous TiO2/Carbon beads have been prepared via a facile impregnation-carbonization approach, in which a porous anion-exchange resin and K2TiO(C2O4)2 were used as hard carbon and titanium source, respectively. Characterization results reveal that the self-assembled composites have disordered mesostructure, uniform mesopores, large pore volumes, and high surface areas. The mesopore walls are composed of amorphous carbon, well-dispersed and confined anatase or rutile nanoparticles. Some anatase phase of TiO2 was transformed to rutile phase via an increase of carbonization temperature or repeated impregnation of the resin with TiO(C2O4)22− species. X-ray photoelectron spectroscopy, carbon, hydrogen, and nitrogen element analysis, and thermal gravity analysis results indicate the doping of carbon into the TiO2 lattice and strong interaction between carbon and TiO2 nanoparticles. A synergy effect by carbon and TiO2 in the composites has been discussed herein on the degradation of methyl orange under visible light. The dye removal process involves adsorption of the dye from water by the mesopores in the composites, followed by photodegradation on the separated dye-loaded catalysts. Mesopores allow full access of the dye molecules to the surface of TiO2 nanoparticles. Importantly, the bead format of such composite enables their straightforward separation from the reaction mixture in their application as a liquid-phase heterogeneous photodegradation catalyst.
机译:通过一种简便的浸渍-碳化方法制备了介孔TiO2 /碳珠,在该方法中,多孔阴离子交换树脂和K2TiO(C2O4)2分别用作硬碳源和钛源。表征结果表明,自组装复合材料具有无序的介孔结构,均匀的介孔,大的孔体积和高表面积。中孔壁由无定形碳,分散良好且受限制的锐钛矿或金红石纳米颗粒组成。通过提高碳化温度或用TiO(C2O4)2 2-树脂反复浸渍,TiO2的某些锐钛矿相转变为金红石相。 X射线光电子能谱,碳,氢和氮元素分析以及热引力分析结果表明,碳掺杂到TiO2晶格中,并且碳与TiO2纳米颗粒之间有很强的相互作用。本文中已经讨论了碳和TiO2在复合材料中的协同作用对可见光下甲基橙降解的影响。染料去除过程包括复合物中介孔从水中吸附染料,然后在分离的负载染料的催化剂上进行光降解。中孔允许染料分子完全进入TiO2纳米颗粒的表面。重要的是,这种复合物的珠粒形式使得它们在作为液相非均相光降解催化剂的应用中能够直接从反应混合物中分离出来。

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