Publikationen

Institut für Technische Chemie

Zeige Ergebnisse 151 - 160 von 1670

2022


Paulsen, M., Zychlinsky Scharff, A., de Cassan, K., Sugianto, R. I., Blume, C., Blume, H., Christmann, M., Hauß, C., Illig, T., Jonczyk, R., Klopp, N., Kopfnagel, V., Lichtinghagen, R., Lucas, H., Luhr, A., Mutschler, F., Pietschmann, T., Pott, P.-C., Prokein, J., ... Melk, A. (2022). Children and Adolescents' Behavioral Patterns in Response to Escalating COVID-19 Restriction Reveal Sex and Age Differences. Journal of adolescent health, 70(3), 378-386. https://doi.org/10.1016/j.jadohealth.2021.11.021
Petermeier, P., Bittner, J. P., Müller, S., Byström, E., & Kara, S. (2022). Design of a green chemoenzymatic cascade for scalable synthesis of bio-based styrene alternatives. Green chemistry, 24(18), 6889-6899. https://doi.org/10.1039/d2gc01629j
Rhimi, B., Padervand, M., Jouini, H., Ghasemi, S., Bahnemann, D. W., & Wang, C. (2022). Recent progress in NOxphotocatalytic removal: Surface/interface engineering and mechanistic understanding. Journal of Environmental Chemical Engineering, 10(6), Artikel 108566. https://doi.org/10.1016/j.jece.2022.108566
Romischke, J., Scherkus, A., Saemann, M., Krueger, S., Bader, R., Kragl, U., & Meyer, J. (2022). Swelling and Mechanical Characterization of Polyelectrolyte Hydrogels as Potential Synthetic Cartilage Substitute Materials. Gels, 8(5), Artikel 296. https://doi.org/10.3390/gels8050296
Rösner, L. S., Walter, F., Ude, C., John, G. T., & Beutel, S. (2022). Sensors and Techniques for On-Line Determination of Cell Viability in Bioprocess Monitoring. Bioengineering, 9(12), Artikel 762. https://doi.org/10.3390/bioengineering9120762
Saballus, M. (2022). Intensification of cell clarification in monoclonal antibody manufacturing. [Dissertation, Gottfried Wilhelm Leibniz Universität Hannover]. Leibniz Universität Hannover. https://doi.org/10.15488/12762
Sauty, B., Santesarti, G., Fleischhammer, T., Lindner, P., Lavrentieva, A., Pepelanova, I., & Marino, M. (2022). Enabling Technologies for Obtaining Desired Stiffness Gradients in GelMA Hydrogels Constructs. Macromolecular Chemistry and Physics, 223(2), Artikel 2100326. https://doi.org/10.1002/macp.202100326
Schellenberg, J., Nagraik, T., Wohlenberg, O. J., Ruhl, S., Bahnemann, J., Scheper, T., & Solle, D. (2022). Stress-induced increase of monoclonal antibody production in CHO cells. Engineering in life sciences, 22(5), 427-436. https://doi.org/10.1002/elsc.202100062, https://doi.org/10.15488/12749
Schmitz, C., Pepelanova, I., Ude, C., & Lavrentieva, A. (2022). Studies on oxygen availability and the creation of natural and artificial oxygen gradients in gelatin-methacryloyl hydrogel 3D cell culture. Journal of Tissue Engineering and Regenerative Medicine, 16(11), 977-986. https://doi.org/10.1002/term.3344
Seiler, L. K., Phung, N. L., Nikolin, C., Immenschuh, S., Erck, C., Kaufeld, J., Haller, H., Falk, C. S., Jonczyk, R., Lindner, P., Thoms, S., Siegl, J., Mayer, G., Feederle, R., & Blume, C. A. (2022). An Antibody-Aptamer-Hybrid Lateral Flow Assay for Detection of CXCL9 in Antibody-Mediated Rejection after Kidney Transplantation. Diagnostics, 12(2), Artikel 308. https://doi.org/10.3390/diagnostics12020308