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首页> 外文期刊>ChemCatChem >NMR Spectroscopic Characterization of Flame-Made Amorphous Silica-Alumina for Cyclohexanol and Glyceraldehyde Conversion
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NMR Spectroscopic Characterization of Flame-Made Amorphous Silica-Alumina for Cyclohexanol and Glyceraldehyde Conversion

机译:用于环己醇和甘油醛转化的火焰制备的无定形二氧化硅 - 氧化铝的NMR光谱表征

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摘要

Amorphous silica-aluminas (ASAs), possessing both Bronsted acid sites (BAS) and Lewis acid sites (LAS), are important bifunctional catalysts in various industrial applications. Solid-state NMR spectroscopy has been widely used for characterizing the local structure and the surface sites of ASAs with probe molecules. In this work, four-, five- and six-coordinated Al species have been observed on the flame-made ASAs by Al-27 MQ MAS NMR experiment. H-1/Al-27 TRAPDOR MAS NMR experiments confirmed that surface Al species contribute to the formation of BAS and protonate ammonia probe molecules. The adsorption of ammonia on Lewis acidic Al sites (delta(1H)=3.0 ppm) was evidenced by various H-1 MAS NMR experiments on samples dehydrated at different temperatures, allowing the distinction from ammonium ions (delta(1H)=6.7 ppm) formed at BAS. The signal of ammonia adsorbed on LAS increased with increasing Al content in the ASAs. These properties together with the absence of pore diffusional constraints render the flame-made ASAs excellent catalysts for cyclohexanol dehydration and the conversion of glyceraldehyde in ethanol to ethyl lactate, outperforming the performance of other ASAs or zeolites.
机译:具有伪装酸部位(BAS)和路易斯酸部位(LAS)的无定形二氧化硅 - 氧化铝(ASA)是各种工业应用中的重要双官能催化剂。固态NMR光谱已广泛用于用探针分子表征局部结构和朝鲜表面位点。在这项工作中,通过Al-27 MQ MAS NMR实验,在燃烧的ASA上观察到四个,五六和六种协调的AL物种。 H-1 / Al-27 Trapdor Mas NMR实验证实,表面Al物种有助于形成BAS和质子氨酸氨探针分子。通过在不同温度脱水的样品上的各种H-1MAS NMR实验证明了氨对路易斯酸性Al位点(Delta(1H)= 3.0ppm)的吸附,允许与铵离子的区别(δ(1H)= 6.7ppm)在BAS形成。在LAS上吸附的氨的信号随着ASA的增加而增加。这些特性与孔隙差约束的不存在使燃烧的ASA是环己醇脱水的优异催化剂,并将甘氨醛转化为乙醇中的乙醇,优于其他ASA或沸石的性能。

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