Zawada, A.M.; Emal, K.; Förster, E.; Saremi, S.; Delinski, D.; Theis, L.; Küng, F.; Xie, W.; Werner, J.; Stauss-Grabo, M.;
et al. Hydrophilic Modification of Dialysis Membranes Sustains Middle Molecule Removal and Filtration Characteristics. Membranes 2024, 14, 83.
https://doi.org/10.3390/membranes14040083
AMA Style
Zawada AM, Emal K, Förster E, Saremi S, Delinski D, Theis L, Küng F, Xie W, Werner J, Stauss-Grabo M,
et al. Hydrophilic Modification of Dialysis Membranes Sustains Middle Molecule Removal and Filtration Characteristics. Membranes. 2024; 14(4):83.
https://doi.org/10.3390/membranes14040083
Chicago/Turabian Style
Zawada, Adam M., Karlee Emal, Eva Förster, Saeedeh Saremi, Dirk Delinski, Lukas Theis, Florian Küng, Wenhao Xie, Joanie Werner, Manuela Stauss-Grabo,
and et al. 2024. "Hydrophilic Modification of Dialysis Membranes Sustains Middle Molecule Removal and Filtration Characteristics" Membranes 14, no. 4: 83.
https://doi.org/10.3390/membranes14040083
APA Style
Zawada, A. M., Emal, K., Förster, E., Saremi, S., Delinski, D., Theis, L., Küng, F., Xie, W., Werner, J., Stauss-Grabo, M., Faust, M., Boyington, S., & Kennedy, J. P.
(2024). Hydrophilic Modification of Dialysis Membranes Sustains Middle Molecule Removal and Filtration Characteristics. Membranes, 14(4), 83.
https://doi.org/10.3390/membranes14040083