4.6 Article

Probing Zeolite Crystal Architecture and Structural Imperfections using Differently Sized Fluorescent Organic Probe Molecules

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 23, Issue 26, Pages 6305-6314

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201700078

Keywords

confocal fluorescence microscopy; crystal growth; fluorescent probes; polarization dependence; zeolites

Funding

  1. Top grant of CW-NWO
  2. European Union [702149]
  3. Marie Curie Actions (MSCA) [702149] Funding Source: Marie Curie Actions (MSCA)

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A micro-spectroscopic method has been developed to probe the accessibility of zeolite crystals using a series of fluorescent 4-(4-diethylaminostyryl)-1-methylpyridinium iodide (DAMPI) probes of increasing molecular size. Staining large zeolite crystals with MFI (ZSM-5) topology and subsequent mapping of the resulting fluorescence using confocal fluorescence microscopy reveal differences in structural integrity: the 90 degrees intergrowth sections of MFI crystals are prone to develop structural imperfections, which act as entrance routes for the probes into the zeolite crystal. Polarization-dependent measurements provide evidence for the probe molecule's alignment within the MFI zeolite pore system. The developed method was extended to BEA (Beta) crystals, showing that the previously observed hourglass pattern is a general feature of BEA crystals with this morphology. Furthermore, the probes can accurately identify at which crystal faces of BEA straight or sinusoidal pores open to the surface. The results show this method can spatially resolve the architecture-dependent internal pore structure of microporous materials, which is difficult to assess using other characterization techniques such as X-ray diffraction.

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