Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Ramona, Plothe"'
Autor:
Hekai Xia, Joerg C. Tiller, Ulf Bednarzick, Montasser Hijazi, Jorena Storkmann, Christian Krumm, Martin Schmidt, Ramona Plothe, Denise dos Santos
Publikováno v:
Polymer. 175:294-301
Polymers with a lower critical point solution temperature (LCST) are widely investigated responsive materials and are already in use for smart materials applications, e.g., for medicinal purposes. Hydrogels prepared from these polymers usually exhibi
Autor:
Ramona Plothe, Britta Glowacki, Angela Metz, Thomas Rösener, Michael Scheckenbach, Sonja Herres-Pawlis, Andreas Koszalkowski, Andreas Beringer, Janna Michaelis de Vasconcellos, Roxana Haase, Ulrich Flörke, Alexander Hoffmann
Publikováno v:
European Journal of Inorganic Chemistry. 2016:4974-4987
The synthesis of the new hybrid guanidine ligands DMEGdmap, DMEGdeae, TMGdmab, DMEGdmab, TMGdeab and DMEGdeab is reported. These ligands were combined with zinc chloride, and the six obtained new complexes were structurally characterised by X-ray cry
Autor:
Ina Sittko, Ramona Plothe, Meike Roth, Vivien Kolbach, Joerg C. Tiller, Maximilian Fortmann, Franziska Lanfer
Publikováno v:
Biotechnology and Bioengineering. 114:39-45
Nanofibers are advantageous carriers for biocatalysts, because they show lower diffusion limitations due to their high surface/volume ratio. Only a few samples are known where enzymes are directly spun into nanofibers, mostly because there are not ma
Autor:
Ramona, Plothe, Ina, Sittko, Franziska, Lanfer, Maximilian, Fortmann, Meike, Roth, Vivien, Kolbach, Joerg C, Tiller
Publikováno v:
Biotechnology and bioengineering. 114(1)
Nanofibers are advantageous carriers for biocatalysts, because they show lower diffusion limitations due to their high surface/volume ratio. Only a few samples are known where enzymes are directly spun into nanofibers, mostly because there are not ma