沸石晶体反应性和结晶性的x射线激发光学荧光和衍射成像:晶体学和分子光谱学于一体。

Zoran Ristanović, Jan P Hofmann, Marie-Ingrid Richard, Tao Jiang, Gilbert A Chahine, Tobias U Schülli, Florian Meirer, Bert M Weckhuysen
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引用次数: 3

摘要

在单粒子水平上测量多相催化的构效关系具有挑战性。首次利用单束x射线测定了单个沸石晶体的晶体结构和反应性。该方法生成了与苯乙烯探针分子反应的沸石晶体的结晶度和Brønsted反应性的μm分辨x射线衍射图(μ-XRD)和x射线激发光学荧光图(μ-XEOF)。化学反应性的局部梯度(源自μ-XEOF)与局部结晶度和框架Al含量(通过μ-XRD测定)相关。根据沸石的结晶度,有选择地形成两种明显不同类型的荧光物质。结果表明,这种方法的潜力,以解决晶体结构的多孔材料及其反应性,在一个实验中,通过x射线诱导荧光在反应中心形成的有机分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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X-ray Excited Optical Fluorescence and Diffraction Imaging of Reactivity and Crystallinity in a Zeolite Crystal: Crystallography and Molecular Spectroscopy in One.

Structure-activity relationships in heterogeneous catalysis are challenging to be measured on a single-particle level. For the first time, one X-ray beam is used to determine the crystallographic structure and reactivity of a single zeolite crystal. The method generates μm-resolved X-ray diffraction (μ-XRD) and X-ray excited optical fluorescence (μ-XEOF) maps of the crystallinity and Brønsted reactivity of a zeolite crystal previously reacted with a styrene probe molecule. The local gradients in chemical reactivity (derived from μ-XEOF) were correlated with local crystallinity and framework Al content, determined by μ-XRD. Two distinctly different types of fluorescent species formed selectively, depending on the local zeolite crystallinity. The results illustrate the potential of this approach to resolve the crystallographic structure of a porous material and its reactivity in one experiment via X-ray induced fluorescence of organic molecules formed at the reactive centers.

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