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Isolating Clusters of Light Elements in Molecular Sieves with Atom Probe Tomography

机译:原子探针层析成像技术分离分子筛中的轻元素簇

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摘要

Understanding the 3-D distribution and nature of active sites in heterogeneous catalysts is critical to developing structure–function relationships. However, this is difficult to achieve in microporous materials as there is little relative z-contrast between active and inactive framework elements (e.g., Al, O, P, and Si), making them difficult to differentiate with electron microscopies. We have applied atom probe tomography (APT), currently the only nanometer-scale 3-D microscopy to offer routine light element contrast, to the methanol-to-hydrocarbons (MTH) catalyst SAPO-34, with Si as the active site, which may be present in the framework as either isolated Si species or clusters (islands) of Si atoms. ~(29)Si solid-state NMR data on isotopically enriched and natural abundance materials are consistent with the presence of Si islands, and the APT results have been complemented with simulations to show the smallest detectable cluster size as a function of instrument spatial resolution and detector efficiency. We have identified significant Si–Si affinity in the materials, as well as clustering of coke deposited by the MTH reaction (~(13)CH_(3)OH used) and an affinity between Brønsted acid sites and coke. A comparison with simulations shows that the ultimate spatial resolution that can be attained by APT applied to molecular sieves is 0.5–1 nm. Finally, the observed ~(13)C clusters are consistent with hydrocarbon pool mechanism intermediates that are preferentially located in regions of increased Brønsted acidity.
机译:了解多相催化剂中活性部位的3-D分布和性质对于建立结构与功能的关系至关重要。然而,在微孔材料中很难做到这一点,因为在活性和非活性骨架元素(例如,Al,O,P和Si)之间几乎没有相对的z-对比度,这使得它们难以通过电子显微术区分。我们已将原子探针层析成像(APT)(目前是唯一可提供常规轻元素对比的纳米级3-D显微镜)应用于以Si为活性位点的甲醇制烃(MTH)催化剂SAPO-34,可能以孤立的硅物种或硅原子簇(岛)的形式存在于框架中。同位素富集和天然丰度材料的〜(29)Si固态NMR数据与Si岛的存在一致,并且APT结果已通过模拟进行补充,以显示最小的可检测团簇尺寸与仪器空间分辨率和探测器效率。我们已经确定了材料中显着的Si-Si亲和力,以及通过MTH反应沉积的焦炭的聚集(使用的〜(13)CH_(3)OH)以及布朗斯台德酸位与焦炭之间的亲和力。与模拟的比较表明,APT应用于分子筛可获得的最终空间分辨率为0.5-1 nm。最后,观察到的〜(13)C团簇与烃池机制中间体一致,后者优先位于布朗斯台德酸度增加的区域。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2018年第29期|9154-9158|共5页
  • 作者单位

    Debye Institute for Nanomaterials Science, Utrecht University;

    Grinnell College;

    NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University;

    NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge;

    Structural Geology & EM, Utrecht University;

    Debye Institute for Nanomaterials Science, Utrecht University;

    Debye Institute for Nanomaterials Science, Utrecht University;

    Debye Institute for Nanomaterials Science, Utrecht University;

    NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University;

    NMR Spectroscopy, Bijvoet Center for Biomolecular Research, Utrecht University;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge;

    Debye Institute for Nanomaterials Science, Utrecht University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:23

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