Electron Tomography Reveals the Active Phase–Support Interaction in Sulfidic Hydroprocessing Catalysts

Publication date

2017-06-19

Authors

Eijsbouts, Sonja
Li, Xuang
Juan-Alcaniz, Jana
van den Oetelaar, Leon C A
Bergwerff, Jaap
Loos, Joachim
Carlsson, Anna
Vogt, EelcoORCID 0000-0003-4556-4283ISNI 000000039655144X

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Abstract

Conventional two-dimensional (2D) transmission electron microscopy of sulfidic hydroprocessing catalysts can be deceiving and give the impression that parts of the support are overloaded with active phase. High-angle annular dark field scanning transmission electron microscopy tomography reveals details on the morphology of MoS2 crystallites and their interaction with the Al2O3 and TiO2 support particles. The three-dimensional (3D) reconstruction shows that the active phase is mainly present as MoS2 single slabs of various shapes aligned with the support. It becomes clear that the surface of the support particles is, in fact, only partly covered by the active phase and the pores remain accessible for reactant molecules.

Keywords

heterogenous catalysis, electron microscopy, tomography, molybdenum disulfide, porous support

Citation

Eijsbouts, S, Li, X, Juan-Alcaniz, J, van den Oetelaar, L C A, Bergwerff, J, Loos, J, Carlsson, A & Vogt, E T C 2017, 'Electron Tomography Reveals the Active Phase–Support Interaction in Sulfidic Hydroprocessing Catalysts', ACS Catalysis, vol. 7, no. 7, pp. 4817–4821. https://doi.org/10.1021/acscatal.7b01201