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Synthesis, physicochemical characterization, and catalytic evaluation of three-dimensionally ordered macroporous metal oxide catalysts and photocatalysts.

机译:三维有序大孔金属氧化物催化剂和光催化剂的合成,物理化学表征和催化评估。

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摘要

Modifications of well-established sol-gel chemistry were adopted to improve the chemical, structural, and optical properties of three dimensionally ordered macroporous (3DOM) materials. The modified synthesis allowed for the control of the grain-size of the crystalline product, the chemical properties as in catalytic activity, the attainment of the desired crystalline phase, and the ability to produce complex materials such as 3DOM layered/tunneled titanates. One of the first successfully achieved syntheses was that of 3DOM zirconia and sulfate promoted zirconia. In this synthesis, grain sizes of less than 3–5 nm were achieved by stabilizing the zirconia precursor with either an acetate or nitrate group. This functionality in turn slowed down the rate of condensation of the zirconium complex, which led to the formation of small particles. In addition, sulfated latex-templated amorphous zirconia produced crystalline materials with even finer grains and relatively high surface area that possessed catalytic activity in n-butane isomerization reaction. Moreover, the simple synthesis adopted allowed for further improvement in the catalytic activity by the addition of a combination of different co-catalysts; platinum, iron, and tungsten. These co-catalysts enhanced the product yield and prolonged the lifetime of the catalyst on stream. The formation of zeolitic nano-crystalline, uniform and continuous layer increased the surface area of the catalysts and imparted the system with interesting and unique catalytic activity. The photonic stop band inherent in 3DOM structures was utilized in a TiO2/SiO2 nanocomposite photocatalyst to improve the photooxidation of a dye molecule in aqueous suspension. By positioning the wavelength of the stop band to overlap the red edge of the emission line of the catalytically active species in the catalyst, the rate of the photocatalytic oxidation was enhanced by increasing the emission efficiency of these active species. This was accomplished by making higher energy emission lines a less favorable de-excitation path by partially blocking them with the blue edge of the stop band.
机译:采用完善的溶胶-凝胶化学方法来改进三维有序大孔(3DOM)材料的化学,结构和光学性质。改进的合成方法可以控制结晶产物的晶粒尺寸,催化活性方面的化学性质,所需结晶相的获得以及生产复杂材料(例如3DOM层状/隧道状钛酸盐)的能力。第一个成功实现的合成方法之一是3DOM氧化锆和硫酸盐促进的氧化锆。在该合成中,通过用乙酸盐基团或硝酸盐基团稳定氧化锆前体,可实现小于3-5 nm的晶粒尺寸。该功能性反过来减慢了锆络合物的缩合速率,从而导致了小颗粒的形成。此外,用硫酸盐乳胶为模板的无定形氧化锆产生的晶体材料具有更细的晶粒和较高的表面积,在 n -丁烷异构化反应中具有催化活性。而且,采用简单的合成方法可以通过加入不同助催化剂的组合进一步提高催化活性。铂,铁和钨。这些助催化剂提高了产物收率并延长了催化剂在流中的寿命。沸石纳米晶体,均匀且连续的层的形成增加了催化剂的表面积,并使该体系具有有趣且独特的催化活性。 TiO 2 / SiO 2 纳米复合光催化剂利用3DOM结构固有的光子阻带提高了水悬浮液中染料分子的光氧化能力。通过将阻带的波长定位为与催化剂中催化活性物质的发射线的红色边缘重叠,可以通过增加这些活性物质的发射效率来提高光催化氧化的速率。这是通过将较高能量的发射线用阻带的蓝色边缘部分阻塞来使其成为较不利的消磁路径来实现的。

著录项

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

  • 入库时间 2022-08-17 11:45:41

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