Microwave-assisted one-pot sol–gel synthesis of tungsten silicate microspheres with dispersed WOx and their activity in ethanol dehydration

Skoda, David;Pokorny, Tomas;Hanulikova, Barbora;Styskalik, Ales;Debecker, Damien;et.al.
(2026) Journal of Materials Chemistry A — Vol. 14, n° 24, p. 14866-14883 (2026)

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Authors
  • Skoda, Davidorcid-logoCentre of Polymer Systems, Tomas Bata University in Zlín, tr. Tomase Bati 5678, Zlín, CZ-76001, Czech Republic
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  • Pokorny, Tomasorcid-logoDepartment of Chemistry, Faculty of Science, Masaryk University, Kotlarska 2, Brno, CZ-61137, Czech Republic
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  • Hanulikova, Barboraorcid-logoCentre of Polymer Systems, Tomas Bata University in Zlín, tr. Tomase Bati 5678, Zlín, CZ-76001, Czech Republic
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  • Styskalik, Alesorcid-logoDepartment of Chemistry, Faculty of Science, Masaryk University, Kotlarska 2, Brno, CZ-61137, Czech Republic
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Abstract
This study introduces a novel microspherical W–SiO2 heterogeneous catalyst for alcohol dehydration, prepared via an innovative microwave-assisted condensation synthesis method. The process involves the microwave-assisted preparation of a hybrid tungsten naphthalene dicarboxylate-based precursor solution, which is subsequently condensed with (3-aminopropyl)triethoxysilane in a single step—eliminating the need for separate silica support preparation, as required in conventional impregnation methods. After calcination at 550 °C, the resulting amorphous and porous microspheres contain highly dispersed tungsten species (with loadings of 2, 6, and 12 wt%), with no crystalline WO3 phase detected, even at the highest loading. Compared to a 12 wt% WO3/SiO2 catalyst prepared via conventional impregnation, the W–SiO2 microspheres exhibit higher catalytic activity and ethylene selectivity in ethanol dehydration at 420 °C. Notably, the 2W–SiO2 catalyst achieved the highest initial ethylene productivity per mole of tungsten (520 mmol mmolW−1 h−1), maintaining 230 mmol mmolW−1 h−1 after 1000 minutes on stream, indicating high long-term stability. In terms of mass-specific performance, the 12W–SiO2 catalyst reached 133 mmol g−1 h−1, outperforming other comparable previously reported tungsten–silica catalysts.
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Skoda, D., Pokorny, T., Hanulikova, B., Styskalik, A., Hlavenkova, Z., Simonikova, L., Varada, J., Leonova, L., Kuritka, I., Poleunis, C., & Debecker, D. (2026). Microwave-assisted one-pot sol–gel synthesis of tungsten silicate microspheres with dispersed WOx and their activity in ethanol dehydration. Journal of Materials Chemistry A, 14(24), 14866-14883. https://doi.org/10.1039/d5ta08046k (Original work published 2026)