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In Situ Solid-State ~(13)C NMR Observation of Pore Mouth Catalysis in Etheriflcation of β-Citronellene with Ethanol on Zeolite Beta

机译:β-香柠檬烯与乙醇在β沸石上共沉淀的孔口催化原位固态〜(13)C NMR观察

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摘要

The reaction mechanism of etherification of β-dtronellene with ethanol in liquid phase over acid zeolite beta is revealed by in situ solid-state ~(13)C NMR spectroscopy. Comparison of ~(13)C Hahn-echo and ~1H-~(13)C cross-polarization NMR characteristics is used to discriminate between molecules freely moving in liquid phase outside the zeolite and molecules adsorbed inside zeolite pores and in pore mouths. In the absence of ethanol, β-citronellene molecules enter zeolite pores and react to isomers. In the presence of ethanol, the concentration of β-citronellene inside zeolite pores is very low because of preferential adsorption of ethanol. The etherification reaction proceeds by adsorption of β-citronellene molecule from the external liquid phase in a pore opening where it reacts with ethanol from inside the pore. By competitive adsorption, ethanol prevents the undesired side reaction of β-citronellene isomerization inside zeolite pores. β-citronellene etherification on zeolite beta is suppressed by bulky base molecules (2, 4, 6-collidine and 2, 6-ditertiarybutylpyridine) that do not enter the zeolite pores confirming the involvement of easily accessible acid sites in pore openings. The use of in situ solid-state NMR to probe the transition from intracrystalline catalysis to pore mouth catalysis depending on reaction conditions is demonstrated for the first time. The study further highlights the potential of this NMR approach for investigations of adsorption of multicomponent mixtures in general.
机译:通过原位固态〜(13)C NMR光谱揭示了β-四氢萘烯与乙醇在酸性沸石β上液相醚化的反应机理。 〜(13)C Hahn-echo和〜1H-〜(13)C交叉极化NMR特性的比较用于区分分子在沸石外部以液相自由移动以及分子吸附在沸石孔内部和孔口中。在没有乙醇的情况下,β-香茅烯分子进入沸石孔并与异构体反应。在乙醇的存在下,由于乙醇的优先吸附,沸石孔内β-香茅烯的浓度非常低。醚化反应是通过在孔中从外部液相吸附β-香茅烯分子而进行的,在该孔中它与来自孔内部的乙醇反应。通过竞争性吸附,乙醇可防止沸石孔内β-香茅烯异构化的不良副反应。 β-香茅烯在沸石β上的醚化反应被不会进入沸石孔的庞大的基础分子(2、4、6-可力丁和2、6-二叔丁基吡啶)抑制,这证实了孔中容易接近的酸性部位的参与。首次证明了根据反应条件使用原位固态NMR探测从晶内催化到孔口催化的转变。这项研究进一步强调了这种NMR方法在一般情况下研究多组分混合物吸附的潜力。

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  • 来源
    《Journal of the American Chemical Society》 |2016年第8期|2802-2808|共7页
  • 作者单位

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium;

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium;

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium, The Grey group, Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge, CB2 1EW, United Kingdom;

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium;

    Department of Solid State Sciences, CoCooN, Ghent University, Krijgslaan 281 (S1), Ghent 9000, Belgium;

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium;

    Tectospin, Institut Lavoisier, UMR 8180, Universite de Versailles st. Quentin en Yvelines, 45 Avenue des Etats Unis, 78035 Versailles, Cedex, France, CEMHTI, CNRS UPR 3079, 1D Avenue de la Recherche Scientifique, 45071 Orleans Cedex 2, France;

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium, Tectospin, Institut Lavoisier, UMR 8180, Universite de Versailles st. Quentin en Yvelines, 45 Avenue des Etats Unis, 78035 Versailles, Cedex, France;

    Centre for Surface Chemistry and Catalysis, KU Leuven, Celestijnenlaan 200F, Box 2461, 3001 Heverlee, Leuven, Belgium;

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