Molecular Accessibility and Diffusion of Resorufin in Zeolite Crystals

Publication date

2024-01-02

Authors

Maris, Jacob Jan ErikISNI 0000000506826054
Parker, Luke A.ISNI 0000000507287259
Stanciakova, KatarinaISNI 0000000492923856
Nikolopoulos, NikolaosISNI 0000000492915004
Berendsen, Koen M H
van Blaaderen, AlfonsISNI 0000000388251965
Meirer, FlorianISNI 0000000137317800
Rabouw, Freddy T.ISNI 0000000492491619
Weckhuysen, B.M.ORCID 0000-0001-5245-1426ISNI 0000000110540180

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Article
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Abstract

We have used confocal laser scanning microscopy on the small, fluorescent resorufin dye molecule to visualize molecular accessibility and diffusion in the hierarchical, anisotropic pore structure of large (~10 μm-sized) zeolite-β crystals. The resorufin dye is widely used in life and materials science, but only in its deprotonated form because the protonated molecule is barely fluorescent in aqueous solution. In this work, we show that protonated resorufin is in fact strongly fluorescent when confined within zeolite micropores, thus enabling fluorescence microimaging experiments. We find that J-aggregation guest–guest interactions lead to a decrease in the measured fluorescence intensity that can be prevented by using non-fluorescent spacer molecules. We characterized the pore space by introducing resorufin from the outside solution and following its diffusion into zeolite-β crystals. The eventual homogeneous distribution of resorufin molecules throughout the zeolite indicates a fully accessible pore network. This enables the quantification of the diffusion coefficient in the straight pores of zeolite-β without the need for complex analysis, and we found a value of 3×10−15 m2 s−1. Furthermore, we saw that diffusion through the straight pores of zeolite-β is impeded when crossing the boundaries between zeolite subunits.

Keywords

aggregation, fluorescence probes, fluorescence spectroscopy, host–guest chemistry, zeolites, General Chemistry, Catalysis, Organic Chemistry

Citation

Maris, J J E, Parker, L A, Stanciakova, K, Nikolopoulos, N, Berendsen, K M H, van Blaaderen, A, Meirer, F, Rabouw, F T & Weckhuysen, B M 2024, 'Molecular Accessibility and Diffusion of Resorufin in Zeolite Crystals', Chemistry-A European Journal, vol. 30, no. 1, e202302553. https://doi.org/10.1002/chem.202302553