Dr. Thomas Krenzel
Kontakt
nach Vereinbarung
Campus Kleve
Marie-Curie-Straße 1, 47533 Kleve
Kontakt in Fakultät Technologie und Bionik
Campus Kleve
Marie-Curie-Straße 1, 47533 Kleve
Profil
Wei, P., Li, Z., Yifeng, E., Jiang, Y., Chen, P., Li, L., Krenzel, T. F., & Qian, K. (2024). Electrochemical recognition for D and L-Cysteine using an achiral monodisperse Cu catalyst restricted by nanosized SOD zeolite cage domain. Materials Research Bulletin, 170, 1–9. doi.org/10.1016/j.materresbull.2023.112564
Jiang, Y., E., Y., Wei, P., Wang, J., Chen, P., Wang, L., Krenzel, T. F., Qian, K., & Tong, X. (2023). Application of LTA zeolite-modified electrode for sensitive detection of retinoic acid in tap water. RSC Advances, 13(5), 3364–3370. doi.org/10.1039/d2ra06011f.
Jiang, Y., Zhou, X., E., Y., Wei, P., Chen, P., Li, L., Li, Z., Krenzel, T. F., & Qian, K. (2023). Designing molybdenum disulfide/nickel silicide@sodalite zeolite structure as a high performance core-shell catalyst for methanol oxidation. International Journal of Hydrogen Energy, 48(39), 14717–14729. doi.org/10.1016/j.ijhydene.2023.01.011.
Wei, P., Li, Z., Jiang, Y., Chen, P., Li, L., Qian, K., E., Y., & Krenzel, T. F. (2023). Trace identification of cysteine enantiomers based on an electrochemical sensor assembled from CuxS@SOD zeolite. Biosensors and Bioelectronics, 239, 115631. doi.org/10.1016/j.bios.2023.115631.
Krenzel, T. F., Schreuer, J., Laubner, D., Cichocki, M., & Schneider, H. (2019). Thermo-mechanical properties of mullite ceramics: New data. Journal of the American Ceramic Society, 102(1), 416–426. doi.org/10.1111/jace.15925.
T. F. Krenzel, J. Schreuer, T. M. Gesing, M. Burianek, M. Mühlberg and H. Schneider. Thermal expansion and elastic properties of mullite-type Bi2Ga4O9 and Bi2Fe4O9 single crystals. International Journal of Materials Research, 103, 438-448, 2012.
M. Burianek, T. F. Krenzel, M. Schmittner, J. Schreuer, R. X. Fischer, M. Mühlberg, G. Nenert, H. Schneider and T. M. Gesing. Single crystal growth and characterization of mullite-type Bi2Mn4O10. International Journal of Materials Research, 103, 449-455, 2012.
E. Haussühl, V. L. Vinograd, T. F. Krenzel, J. Schreuer, D. J. Wilson, and J. Ottinger. High temperature elastic properties of Mg-cordierite: experimental studies and atomistic simulations. Zeitschrift für Kristallographie, 226, 1-18, 2011.
T. F. Krenzel, J. Schreuer, M. Burianek, M. Mühlberg, and H. Schneider. Thermomechanical properties of mullite-type Bi2M4O9 and Bi2Mn4O10 compounds. Acta Crystallographica, 26th European Crystallographic Meeting, Darmstadt, (abstract) Suppl. A66: S206, 2010.
T. F. Krenzel, J. Schreuer, and H. Schneider. Thermomechanical properties of mullite up to 1673 K: single crystal vs. ceramics. (abstract) Verhandlungen DPG (VI) 45, 433, (03/2010).
T. F. Krenzel, J. Schreuer, M. Burianek, M. Mühlberg, and H. Schneider. Elastic and anelastic properties of single crystal mullite-type Bi2M4O9 compounds up to 1300 K. Zeitschrift für Kristallographie, 224, (abstract) Suppl. issue No. 29: 86–87, 2009.
T. F. Krenzel & E. Haussühl. The temperature dependence of elastic constants of natural cordierite, (abstract) Proceedings of the Oregon Academy of Science, Vol. LXVI, 36-37, 2008.
- Wei, P., Li, Z., Yifeng, E., Jiang, Y., Chen, P., Li, L., Qian, K., & Krenzel, T. F. (2024). Electrochemical recognition for D and L-Cysteine using an achiral monodisperse Cu catalyst restricted by nanosized SOD zeolite cage domain. Materials Research Bulletin, 170, 1–9. https://doi.org/10.1016/j.materresbull.2023.112564.
- Jiang, Y., E., Y., Wei, P., Wang, J., Chen, P., Wang, L., Krenzel, T. F., Qian, K., & Tong, X. (2023). Application of LTA zeolite-modified electrode for sensitive detection of retinoic acid in tap water. RSC Advances, 13(5), 3364–3370. https://doi.org/10.1039/d2ra06011f.
- Jiang, Y., Zhou, X., E., Y., Wei, P., Chen, P., Li, L., Li, Z., Krenzel, T. F., & Qian, K. (2023). Designing molybdenum disulfide/nickel silicide@sodalite zeolite structure as a high performance core-shell catalyst for methanol oxidation. International Journal of Hydrogen Energy, 48(39), 14717–14729. https://doi.org/10.1016/j.ijhydene.2023.01.011.
- Wei, P., Li, Z., Jiang, Y., Chen, P., Li, L., Qian, K., E., Y., & Krenzel, T. F. (2023). Trace identification of cysteine enantiomers based on an electrochemical sensor assembled from CuxS@SOD zeolite. Biosensors and Bioelectronics, 239, 115631. https://doi.org/10.1016/j.bios.2023.115631.
- Krenzel, T., Schreuer, J., Laubner, D., Cichocki, M., & Schneider, H. (2019). Thermo-mechanical properties of mullite ceramics: New data. Journal of the American Ceramic Society, 102(1), 416–426. https://doi.org/10.1111/jace.15925.
Materialwissenschaften
Eigenschaften von Gläsern