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首页> 外文期刊>Chemistry - A European Journal >On the Synergistic Catalytic Properties of Bimetallic Mesoporous Materials Containing Aluminum and Zirconium: The Prins Cyclisation of Citronellal
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On the Synergistic Catalytic Properties of Bimetallic Mesoporous Materials Containing Aluminum and Zirconium: The Prins Cyclisation of Citronellal

机译:铝和锆双金属介孔材料的协同催化性能:香茅醛的小环环化

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Bimetallic three-dimensional amorphous mesoporous materials, Al-Zr-TUD-1 materials, were synthesised by using a surfactant-free, one-pot procedure employing triethanolamine (TEA) as a complexing reagent. The amount of aluminium and zirconium was varied in order to study the effect of these metals on the Brønsted and Lewis acidity, as well as on the resulting catalytic activity of the material. The materials were characterised by various techniques, including elemental analysis, X-ray diffraction, high-resolution TEM, N2 physisorption, temperature-programmed desorption (TPD) of NH3, and 27Al MAS NMR, XPS and FT-IR spectroscopy using pyridine and CO as probe molecules. Al-Zr-TUD-1 materials are mesoporous with surface areas ranging from 700–900 m2 g−1, an average pore size of around 4 nm and a pore volume of around 0.70 cm3 g−1. The synthesised Al-Zr-TUD-1 materials were tested as catalyst materials in the Lewis acid catalysed Meerwein–Ponndorf–Verley reduction of 4-tert-butylcyclohexanone, the intermolecular Prins synthesis of nopol and in the intramolecular Prins cyclisation of citronellal. Although Al-Zr-TUD-1 catalysts possess a lower amount of acid sites than their monometallic counterparts, according to TPD of NH3, these materials outperformed those of the monometallic Al-TUD-1 as well as Zr-TUD-1 in the Prins cyclisation of citronellal. This proves the existence of synergistic properties of Al-Zr-TUD-1. Due to the intramolecular nature of the Prins cyclisation of citronellal, the hydrophilic surface of the catalyst as well as the presence of both Brønsted and Lewis acid sites synergy could be obtained with bimetallic Al-Zr-TUD-1. Besides spectroscopic investigation of the active sites of the catalyst material a thorough testing of the catalyst in different types of reactions is crucial in identifying its specific active sites.
机译:通过使用三乙醇胺(TEA)作为络合剂的无表面活性剂一锅法,合成了双金属三维无定形介孔材料Al-Zr-TUD-1。改变铝和锆的含量,以研究这些金属对布朗斯台德酸度和路易斯酸度的影响,以及对材料产生的催化活性的影响。通过元素分析,X射线衍射,高分辨率TEM,N 2 物理吸附,NH 3 的程序升温脱附(TPD)等多种技术对材料进行了表征。 ,以及使用吡啶和CO作为探针分子的 27 Al MAS NMR,XPS和FT-IR光谱。 Al-Zr-TUD-1材料是介孔的,表面积为700-900 m 2 g -1 ,平均孔径约为4 nm,孔体积大约0.70 cm 3 g -1 。合成的Al-Zr-TUD-1材料在路易斯酸催化的Meerwein-Ponndorf-Verley还原4-叔丁基环己酮,nopol的分子间Prins合成以及在香茅醛的分子内Prins环化中用作催化剂材料。尽管Al-Zr-TUD-1催化剂的酸位比单金属催化剂低,但根据NH 3 的TPD,这些材料的性能优于单金属Al-TUD-1以及Zr-TUD-1在香茅醛的Prins环化反应中。这证明了Al-Zr-TUD-1的协同性能的存在。由于香茅醛的Prins环化的分子内性质,双金属Al-Zr-TUD-1可以实现催化剂的亲水表面以及Brønsted和Lewis酸位点的协同作用。除了对催化剂材料的活性位点进行光谱研究外,在不同类型的反应中对催化剂进行彻底的测试对于确定其特定的活性位点至关重要。

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