A. Motealleh Et Al. , "Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.," ACS applied materials & interfaces , vol.13, pp.43755-43768, 2021
Motealleh, A. Et Al. 2021. Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.. ACS applied materials & interfaces , vol.13 , 43755-43768.
Motealleh, A., Kart, D., Czieborowski, M., & Kehr, N. S., (2021). Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.. ACS applied materials & interfaces , vol.13, 43755-43768.
Motealleh, Andisheh Et Al. "Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.," ACS applied materials & interfaces , vol.13, 43755-43768, 2021
Motealleh, Andisheh Et Al. "Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.." ACS applied materials & interfaces , vol.13, pp.43755-43768, 2021
Motealleh, A. Et Al. (2021) . "Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.." ACS applied materials & interfaces , vol.13, pp.43755-43768.
@article{article, author={Andisheh Motealleh Et Al. }, title={Functional Nanomaterials and 3D-Printable Nanocomposite Hydrogels for Enhanced Cell Proliferation and for the Reduction of Bacterial Biofilm Formation.}, journal={ACS applied materials & interfaces}, year=2021, pages={43755-43768} }