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Comparison of acidic site quantification methods for a series of nanoscopic aluminum hydroxide fluorides

机译:一系列纳米级氢氧化铝氟化物酸性位点定量方法的比较

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摘要

Quantitative determination of acidic surface sites is highly important for the characterization of solid acids because the activity of a catalyst is often related to the concentration of these sites. A recently developed method using N-15 Nuclear Magnetic Resonance spectroscopy (NMR) for the quantification of acidic Lewis and Bronsted sites has been tested for a series of nanoscopic aluminum hydroxide fluorides. Comparison with other methods for the quantitative determination of acidic sites shows that this N-15 NMR quantification method is a promising technique for the comprehensive investigation of acidic sites. Three different acidic sites, one Bronsted and two Lewis sites, can be distinguished by their N-15 chemical shifts of pyridine and simultaneously quantified under conditions corresponding to catalytic reaction conditions. Determination of the individual concentrations of acidic sites allows further insight into the catalytic process. It was found that the concentration of Bronsted sites correlates with catalyzed conversion of citronellal to isopulegol in the investigated series of catalysts. Additionally, investigations indicate that one of the Lewis sites become blocked during the reaction of citronellal.
机译:酸性表面位点的定量测定对于固体酸的表征非常重要,因为催化剂的活性通常与这些位点的浓度有关。对于一系列纳米级氢氧化铝氟化物,已经测试了使用N-15核磁共振波谱(NMR)量化酸性Lewis和Bronsted位点的最新方法。与其他定量测定酸性位点的方法比较表明,这种N-15 NMR定量方法是一种全面研究酸性位点的有前途的技术。可以通过吡啶的N-15化学位移来区分三个不同的酸性位点(一个布朗斯台德位点和两个路易斯位点),并同时在对应于催化反应条件的条件下对其进行定量。确定酸性位点的各个浓度可以进一步了解催化过程。在研究的一系列催化剂中,发现布朗斯台德位点的浓度与香茅醛向异胡薄荷醇的催化转化有关。另外,研究表明,在香茅醛反应期间,路易斯位点之一被封闭。

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