Small, M.; Faglie, A.; Craig, A.J.; Pieper, M.; Fernand Narcisse, V.E.; Neuenschwander, P.F.; Chou, S.-F.
Nanostructure-Enabled and Macromolecule-Grafted Surfaces for Biomedical Applications. Micromachines 2018, 9, 243.
https://doi.org/10.3390/mi9050243
AMA Style
Small M, Faglie A, Craig AJ, Pieper M, Fernand Narcisse VE, Neuenschwander PF, Chou S-F.
Nanostructure-Enabled and Macromolecule-Grafted Surfaces for Biomedical Applications. Micromachines. 2018; 9(5):243.
https://doi.org/10.3390/mi9050243
Chicago/Turabian Style
Small, Madeline, Addison Faglie, Alexandra J. Craig, Martha Pieper, Vivian E. Fernand Narcisse, Pierre F. Neuenschwander, and Shih-Feng Chou.
2018. "Nanostructure-Enabled and Macromolecule-Grafted Surfaces for Biomedical Applications" Micromachines 9, no. 5: 243.
https://doi.org/10.3390/mi9050243
APA Style
Small, M., Faglie, A., Craig, A. J., Pieper, M., Fernand Narcisse, V. E., Neuenschwander, P. F., & Chou, S.-F.
(2018). Nanostructure-Enabled and Macromolecule-Grafted Surfaces for Biomedical Applications. Micromachines, 9(5), 243.
https://doi.org/10.3390/mi9050243