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High nickel- and titania-containing mesoporous silicas : synthesis and characterisation

机译:含高镍和二氧化钛的介孔二氧化硅:合成和表征

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摘要

In order to heighten the nickel content in mesoporous silica frameworks, a new direct synthesis method, called modified DS method, has been developed instead of the commonly used direct synthesis method. In addition, with the aim of incorporating a high amount of titania into SBA-15 mesoporous silica without blocking its mesopores, a multistep impregnation method, called the MSI method, has also been developed. By using the two developed methods, high nickel- and high titania-containing mesoporous silicas obtained werc synthesized. The nickel- and titania-containing mesoporous silicas were characterised by various techniques, i.e. XRD, TEM, EDX, SENI, N2-sorption, XPS, FTIR, UV-Vis-DRS, UV-VIS, TPR, and Raman spectroscopy. For nickel-containing mesoporous silicas synthesized by the modified DS method, satisfactory mesostructures were obtained and the nickel content was increased up to 14.7 wt.%. So far, no reports have been published on synthesis of mesoporous MCM-41-type silica with higher nickel content than 3.6 wt.% using DS method. Via our modified IDS method, high BET surface area (>840 rný/g) and pore volume (>-0.73 cm3/g were also achieved. Nickel was found to be incorporated into the silica frameworks. Formation of nickel phyllosilicates was also confirmed. After activation, mesostructurcs were still intact. Small nickel clusters embedded in the silica walls were found. A high amount of titania (up to 24.4 wt.%) was incorporated into the mesoporous SBA-15 silica via the multistep impregnation method. No damage to the SBA-15 silica mesostructures was caused. The existence of small titania nano-domins was confirmed to be present by Raman and UV-vis-DRS measurements. High dispersion of them was realized via this method according to the results of low-anglc XRD, TEM and N2-sorption measurements. Importantly, no blockage of mesopores was observed. Photo-activity tests showed the superiority of the materials synthesized by the MSI method to those by one-step impregnation method.
机译:为了提高介孔二氧化硅骨架中的镍含量,已经开发了一种新的直接合成方法,称为改进的DS方法,代替了常用的直接合成方法。另外,为了将大量的二氧化钛掺入到SBA-15中孔二氧化硅中而不阻塞其中孔,还开发了一种称为MSI方法的多步浸渍方法。通过使用两种开发的方法,合成了高纯度的含镍和高二氧化钛的介孔二氧化硅。含镍和二氧化钛的介孔二氧化硅通过各种技术进行表征,即XRD,TEM,EDX,SENI,N2吸附,XPS,FTIR,UV-Vis-DRS,UV-VIS,TPR和拉曼光谱。对于通过改进的DS方法合成的含镍的介孔二氧化硅,获得令人满意的介孔结构,并且镍含量增加至14.7重量%。迄今为止,尚无关于使用DS法合成镍含量高于3.6重量%的中孔MCM-41型二氧化硅的报道。通过我们改进的IDS方法,还获得了较高的BET表面积(> 840rný/ g)和孔体积(> -0.73 cm3 / g),发现镍被掺入二氧化硅骨架中,并证实形成了层状硅酸镍。活化后,介孔结构仍然完好无损,在二氧化硅壁中发现了小的镍团簇,通过多步浸渍法将大量的二氧化钛(高达24.4 wt。%)掺入了介孔SBA-15二氧化硅中。通过拉曼光谱和紫外-可见-DRS测量证实存在小二氧化钛纳米域存在,并根据低角度X射线衍射结果通过这种方法实现了高分散度。 ,TEM和N2吸附测量,重要的是,没有观察到中孔的堵塞,光活性测试表明MSI法合成的材料优于一步浸渍法。

著录项

  • 作者

    Wang Wei;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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