Expertise

  • Material Science

    • Membrane
    • Aluminum Oxide
    • Solvent
    • Material
    • Gas
  • Chemistry

    • Procedure
    • Silicon Dioxide
    • Water Type

Organisations

Ancillary activities

  • Shell Global Solutions International BVFull time position at Shell Global Solutions International BV as Principal Science Expert Process Development

Publications

2025

Functional properties of highly stable SrTi0.95-xZr0.05NixO3-δ for use as oxygen transport membranes (2025)Journal of the European Ceramic Society, 45(16). Article 117715. Tang, Y., Baumann, S., Nijmeijer, A., Guillon, O. & Meulenberg, W.https://doi.org/10.1016/j.jeurceramsoc.2025.117715Creating Nanopores by Calcination of Titanicone Layers Grown by Atmospheric-Pressure Molecular Layer Deposition, for Application in Ceramic Nanofiltration Membranes (2025)Meeting Abstracts of the Electrochemical Society, MA2025-02(31). Sondhi, H., Chen, M., Nijboer, M., Nijmeijer, A., Roozeboom, F., Bechelany, M., Kovalgin, A. & Luiten-Olieman, M.https://doi.org/10.1149/MA2025-02311660mtgabsIntrinsic continuous process safeguarding (2025)[Thesis › PhD Thesis - Research external, graduation UT]. University of Twente. van 't Land, K.https://doi.org/10.3990/1.9789036564441Strontium titanate based materials for use as oxygen transport membranes in membrane reactors (2025)[Thesis › PhD Thesis - Research external, graduation UT]. University of Twente. Tang, Y.https://doi.org/10.3990/1.9789036568708Microporous ceramic nanofiltration membranes using atmospheric pressure atomic- and molecular layer deposition (2025)[Thesis › PhD Thesis - Research UT, graduation UT]. University of Twente. Nijboer, M. P.https://doi.org/10.3990/1.9789036568043Towards the use of triple ionic-electronic conducting lanthanum tungstate as a hydrogen separation membrane (2025)[Thesis › PhD Thesis - Research UT, graduation UT]. University of Twente. Drazkowski, M.https://doi.org/10.3990/1.9789036567640Influence of calcination temperature on the physicochemical properties of atomic/molecular layer deposited hybrid inorganic/organic ceramic nanofiltration membranes (2025)Open Ceramics, 22. Article 100795. Nijboer, M. P., Sondhi, H., Makhoul, E., Bechelany, M., Gabrielli, S., Roozeboom, F., Nijmeijer, A., Kovalgin, A. Y. & Luiten-Olieman, M. W. J.https://doi.org/10.1016/j.oceram.2025.100795Novel dual-phase Ce0.8Gd0.2O2−δ – Gd1-xCexFe1-yCoyO3 composite oxygen transport membrane (2025)Open Ceramics, 22. Article 100771. Fischer, L., Haddad, N., Ran, K., Baumann, S., Sebold, D., Mayer, J., Dornseiffer, J., Nijmeijer, A., Guillon, O. & Meulenberg, W. A.https://doi.org/10.1016/j.oceram.2025.100771Leveraging green electricity to drive propylene production in membrane reactors (2025)Renewable & sustainable energy reviews, 212. Article 115448. Haven, J. P., Lefferts, L., Nijmeijer, A., van der Ham, A. G. J. & Faria Albanese, J. A.https://doi.org/10.1016/j.rser.2025.115448Ceramic Nanofiltration Membranes: Creating Nanopores by Calcination of Atmospheric-Pressure Molecular Layer Deposition Grown Titanicone Layers (2025)Membranes, 15(3). Article 86. Sondhi, H., Chen, M., Nijboer, M. P., Nijmeijer, A., Roozeboom, F., Bechelany, M., Kovalgin, A. & Luiten-Olieman, M.https://doi.org/10.3390/membranes15030086

Research profiles

Address

University of Twente

Horst Complex (building no. 20), room ME364
De Horst 2
7522 LW Enschede
Netherlands

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