Publikationen der einzelnen Arbeitsgruppen
Gesamtliste Publikationen
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2022
Appiarius, Y., Gliese, P. J., Segler, S. A. W., Rusch, P., Zhang, J., Gates, P. J., Pal, R., Malaspina, L. A., Sugimoto, K., Neudecker, T., Bigall, N. C., Grabowsky, S., Bakulin, A. A., & Staubitz, A. (2022). BN-Substitution in Dithienylpyrenes Prevents Excimer Formation in Solution and in the Solid State. Journal of Physical Chemistry C, 126(9), 4563-4576. https://doi.org/10.1021/acs.jpcc.1c08812
Biesterfeld, L., Klepzig, L. F., Niebur, A., Rosebrock, M., & Lauth, J. (2022). Toward Bright Colloidal Near-Infrared Emitters: Surface Passivation of 2D PbSe Nanoplatelets by Metal Halides. Journal of Physical Chemistry C, 126(45), 19277-19285. https://doi.org/10.1021/acs.jpcc.2c05850
Bigall, N. C., Rodio, M., Avugadda, S., Leal, M. P., Di Corato, R., Conteh, J. S., Intartaglia, R., & Pellegrino, T. (2022). Scaling Up Magnetic Nanobead Synthesis with Improved Stability for Biomedical Applications. The Journal of Physical Chemistry A, 126(51), 9605-9617. https://doi.org/10.1021/acs.jpca.2c05902
Buck, F., Bunjaku, O., Caro, J., & Schiestel, T. (2022). High-flux CO2-stable oxygen transport hollow fiber membranes through surface engineering. Journal of the European Ceramic Society, 42(4), 1537-1547. https://doi.org/10.1016/j.jeurceramsoc.2021.11.040
Buschmann, P., Lengsfeld, K. G., Djahandideh, J., & Grabow, J. U. (2022). From rotational resolved spectra to an extended increment system of planar moments allowing ad-hoc conformational identification: Exemplification by the broadband microwave spectrum of α-hydroxyisobutyric acid. Journal of molecular structure, 1250, Artikel 131805. https://doi.org/10.1016/j.molstruc.2021.131805
Calles, S., Heitjans, P., & Börger, A. (2022). Electrochemical Impedance Spectroscopic Studies of PHEV2 form-factor Lithium-ion Cells for Automotive Applications. Journal of Energy and Power Technology, 4(2), Artikel 015. https://doi.org/10.21926/jept.2202015
Calles, S., Ulke, J., Heitjans, P., & Börger, A. (2022). On-Load Impedance Measurements on Automotive Lithium-Ion Cells. Chemie-Ingenieur-Technik, 94(4), 599-602. https://doi.org/10.1002/cite.202100061
Caro, J., & Voigt, I. (2022). Jürgen Caro zum 70. Chemie-Ingenieur-Technik, 94(1-2), 3. https://doi.org/10.1002/cite.202270102
Chandran, C. V., & Heitjans, P. (2022). Solid-state NMR studies of lithium ion dynamics across materials classes: Review update. Annual Reports on NMR Spectroscopy, 106, 1-51. https://doi.org/10.1016/bs.arnmr.2022.04.001
Chen, G., Feldhoff, A., Weidenkaff, A., Li, C., Liu, S., Zhu, X., Sunarso, J., Huang, K., Wu, XY., Ghoniem, A. F., Yang, W., Xue, J., Wang, H., Shao, Z., Duffy, J. H., Brinkman, K. S., Tan, X., Zhang, Y., Jiang, H., ... Kriegel, R. (2022). Roadmap for Sustainable Mixed Ionic-Electronic Conducting Membranes. Advanced functional materials, 32(6), Artikel 2105702. https://doi.org/10.1002/adfm.202105702