Cai Jinlu, Hu Shenghua, Xiang Junhuai, Zhang Honghua, Men Dandan
Jiangxi Key Laboratory of Surface Engineering, School of Materials and Mechanical & Electrical Engineering, Jiangxi Science and Technology Normal University Xuefu Road 589 Nanchang 330038 China
RSC Adv. 2020 Nov 9;10(67):40830-40842. doi: 10.1039/d0ra01105c.
The TiO/C composites with approximately 40 wt% of carbon were prepared by calcination of precursors, formed from a one-pot liquid phase reaction between Ti(SO) and flour. All TiO/C composites displayed mesoporous structures with high BET surface areas (117-138 m g) and small crystal sizes of TiO (8-27 nm). The contents of graphitic carbon and rutile TiO increased, while the surface area and TiO crystal size decreased for the TiO/C composite on increasing the calcination temperature from 650 to 800 °C; when calcinated at 800 °C, the anatase TiO completely changed into rutile TiO in the TiO/C composite. The TiO/C composite calcinated at higher temperatures exhibited better adsorptive and photocatalytic degradation performance in the removal of methylene blue (MB). For the entire rutile TiO/C-800 composite, the adsorption process of MB can be well described by the pseudo-second-order kinetic model and is governed by chemical adsorption with the maximum adsorption capacity value equal to about 15 mg g. Under continuous illumination with a 254 nm UV lamp (15 W) for 3 h, the percentage of MB (14 mg l) photocatalytic degradation on 50 mg of TiO/C-800 was 25.1% higher than that of the maximum adsorption removal. These results suggest that the graphitized carbon has a significant effect on the adsorptivity and photocatalytic activity of the TiO/C composite.
通过煅烧前驱体制备了碳含量约为40 wt%的TiO/C复合材料,该前驱体由Ti(SO)与面粉的一锅法液相反应形成。所有TiO/C复合材料均显示出具有高BET表面积(117 - 138 m²/g)的介孔结构和小尺寸的TiO晶体(8 - 27 nm)。随着煅烧温度从650℃升高到800℃,TiO/C复合材料中石墨化碳和金红石型TiO的含量增加,而比表面积和TiO晶体尺寸减小;当在800℃煅烧时,TiO/C复合材料中的锐钛矿型TiO完全转变为金红石型TiO。在较高温度下煅烧的TiO/C复合材料在去除亚甲基蓝(MB)方面表现出更好的吸附和光催化降解性能。对于整个金红石型TiO/C - 800复合材料,MB的吸附过程可以用准二级动力学模型很好地描述,并且受化学吸附控制,最大吸附容量值约为15 mg/g。在254 nm紫外灯(15 W)连续照射3小时的条件下,50 mg的TiO/C - 800对14 mg/L的MB光催化降解率比最大吸附去除率高25.1%。这些结果表明,石墨化碳对TiO/C复合材料的吸附性和光催化活性有显著影响。