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Surfactant removal from mesoporous TiO2 nanocrystals by supercritical CO2 fluid extraction

机译:超临界CO2流体萃取从中孔TiO2纳米晶体中去除表面活性剂

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In this study, mesoporous TiO2 crystals were synthesized with a sol-gel process in the presence of hexadecylamine which was used as a structure-directing agent. The neutral template was removed by either supercritical CO2 extraction (SCE) or conventional calcinations to produce mesopores, and the pore characteristics of mesoporous TiO2 were investigated with TGA, XRD, FT-IR, SEM and N2 sorption analysis. The results showed that hexadecylamine was completely combusted by a thermal treatment above 400 °C, whereas SCE successfully removed more than 62% of the surfactant with methanol used as a modifier. However, in contrast to SCE, calcination at 400 "C accompanied a reduction in surface area and pore volume, as well as the partial collapse of the mesostructure. The combination of SCE and subsequent heat treatment at 400 °C not only improved the porosity but also retarded the structure destruction due to much less exothermal behavior. The SCE approach provided mesoporous TiO2 nanocrystals with remarkably high mesoporosity. The SCE technique can result in numerous advantages such as high mesoporosity, short processing time, low energy consumption, and environmental benefit.
机译:在这项研究中,介孔的TiO2晶体是在十六烷基胺的存在下通过溶胶-凝胶法合成的,十六烷基胺被用作结构导向剂。通过超临界CO2萃取(SCE)或常规煅烧除去中性模板以产生中孔,并通过TGA,XRD,FT-IR,SEM和N2吸附分析研究了中孔TiO2的孔特征。结果表明十六烷基胺在400°C以上的热处理中完全燃烧,而SCE用甲醇作为改性剂成功去除了62%以上的表面活性剂。但是,与SCE相比,在400℃下煅烧伴随着表面积和孔体积的减少以及介孔结构的部分塌陷。SCE和随后在400°C下进行的热处理相结合不仅改善了孔隙率,而且SCE方法还为中孔TiO2纳米晶体提供了极高的中孔性,SCE技术可以带来许多优点,如中孔率高,加工时间短,能耗低以及对环境有利。

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