Gülses, A.; Lopar, A.; Es-Souni, M.; Emmert, M.; Es-Souni, M.; Behrens, E.; Naujokat, H.; Liedtke, K.R.; Acil, Y.; Wiltfang, J.;
et al. A Novel Surface Modification Strategy via Photopolymerized Poly-Sulfobetaine Methacrylate Coating to Prevent Bacterial Adhesion on Titanium Surfaces. Materials 2021, 14, 3303.
https://doi.org/10.3390/ma14123303
AMA Style
Gülses A, Lopar A, Es-Souni M, Emmert M, Es-Souni M, Behrens E, Naujokat H, Liedtke KR, Acil Y, Wiltfang J,
et al. A Novel Surface Modification Strategy via Photopolymerized Poly-Sulfobetaine Methacrylate Coating to Prevent Bacterial Adhesion on Titanium Surfaces. Materials. 2021; 14(12):3303.
https://doi.org/10.3390/ma14123303
Chicago/Turabian Style
Gülses, Aydin, Antonia Lopar, Martha Es-Souni, Marie Emmert, Mona Es-Souni, Eleonore Behrens, Hendrik Naujokat, Kim Rouven Liedtke, Yahya Acil, Jörg Wiltfang,
and et al. 2021. "A Novel Surface Modification Strategy via Photopolymerized Poly-Sulfobetaine Methacrylate Coating to Prevent Bacterial Adhesion on Titanium Surfaces" Materials 14, no. 12: 3303.
https://doi.org/10.3390/ma14123303
APA Style
Gülses, A., Lopar, A., Es-Souni, M., Emmert, M., Es-Souni, M., Behrens, E., Naujokat, H., Liedtke, K. R., Acil, Y., Wiltfang, J., & Flörke, C.
(2021). A Novel Surface Modification Strategy via Photopolymerized Poly-Sulfobetaine Methacrylate Coating to Prevent Bacterial Adhesion on Titanium Surfaces. Materials, 14(12), 3303.
https://doi.org/10.3390/ma14123303