Publikationen der AG Bigall

Zeige Ergebnisse 21 - 30 von 137

2022


Abdelmonem, A. M., Zámbó, D., Rusch, P., Schlosser, A., Klepzig, L. F., & Bigall, N. C. (2022). Versatile Route for Multifunctional Aerogels Including Flaxseed Mucilage and Nanocrystals. Macromolecular Rapid Communications, 43(7), Artikel 2100794. Vorabveröffentlichung online. https://doi.org/10.15488/11916, https://doi.org/10.1002/marc.202100794
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. Vorabveröffentlichung online. https://doi.org/10.1021/acs.jpcc.1c08812
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. Vorabveröffentlichung online. https://doi.org/10.1021/acs.jpca.2c05902
Graf, R. T., Schlosser, A., Zámbó, D., Schlenkrich, J., Rusch, P., Chatterjee, A., Pfnür, H., & Bigall, N. C. (2022). Interparticle Distance Variation in Semiconductor Nanoplatelet Stacks. Advanced functional materials, 32(24), Artikel 2112621. Vorabveröffentlichung online. https://doi.org/10.1002/adfm.202112621
Hinterding, R., Rieks, D., Kißling, P. A., Steinbach, L., Bigall, N. C., & Feldhoff, A. (2022). Reaction Sintering of Ca3Co4O9 with BiCuSeO Nanosheets for High-Temperature Thermoelectric Composites. Journal of electronic materials, 51(2), 532-542. Vorabveröffentlichung online. https://doi.org/10.1007/s11664-021-09336-2
Kißling, P. A., Lübkemann, F., Mundstock, A., Lohaus, L., Haist, M., Caro, J., & Bigall, N. C. (2022). Is freeze-drying an alternative to solvent exchange for the hydration stop of cementitious suspensions? Cement and concrete research, 159, Artikel 106841. Vorabveröffentlichung online. https://doi.org/10.1016/j.cemconres.2022.106841
Kranz, D., Bessel, P., Niemeyer, M., Borg, H., Rosebrock, M., Himstedt, R., Bigall, N. C., & Dorfs, D. (2022). Size-Dependent Threshold of the Laser-Induced Phase Transition of Colloidally Dispersed Copper Oxide Nanoparticles. The Journal of Physical Chemistry C, 126(36), 15263–15273. Vorabveröffentlichung online. https://doi.org/10.1021/acs.jpcc.2c03815
Li, F., Klepzig, L. F., Keppler, N., Behrens, P., Bigall, N. C., Menzel, H., & Lauth, J. (2022). Layer-by-Layer Deposition of 2D CdSe/CdS Nanoplatelets and Polymers for Photoluminescent Composite Materials. LANGMUIR, 38(37), 11149-11159. Vorabveröffentlichung online. https://doi.org/10.1021/acs.langmuir.2c00455
Liu, Y., Ma, S., Rosebrock, M., Rusch, P., Barnscheidt, Y., Wu, C., Nan, P., Bettels, F., Lin, Z., Li, T., Ge, B., Bigall, N. C., Pfnür, H., Ding, F., Zhang, C., & Zhang, L. (2022). Tungsten Nanoparticles Accelerate Polysulfides Conversion: A Viable Route toward Stable Room-Temperature Sodium–Sulfur Batteries. Advanced science, 9(11), Artikel 2105544. https://doi.org/10.1002/advs.202105544
Mittal, M., Dana, J., Lübkemann, F., Ghosh, H. N., Bigall, N. C., & Sapra, S. (2022). Insight into morphology dependent charge carrier dynamics in ZnSe-CdS nanoheterostructures. Physical Chemistry Chemical Physics, 24(14), 8519-8528. Vorabveröffentlichung online. https://doi.org/10.1039/d1cp05872j