| Style | Citing Format |
|---|---|
| MLA | Ghazali HS, et al.. "Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application." Colloids and Interface Science Communications, vol. 50, no. , 2022, pp. -. |
| APA | Ghazali HS, Askari E, Ghazali ZS, Naghib SM, Braschler T (2022). Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application. Colloids and Interface Science Communications, 50(), -. |
| Chicago | Ghazali HS, Askari E, Ghazali ZS, Naghib SM, Braschler T. "Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application." Colloids and Interface Science Communications 50, no. (2022): -. |
| Harvard | Ghazali HS et al. (2022) 'Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application', Colloids and Interface Science Communications, 50(), pp. -. |
| Vancouver | Ghazali HS, Askari E, Ghazali ZS, Naghib SM, Braschler T. Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application. Colloids and Interface Science Communications. 2022;50():-. |
| BibTex | @article{ author = {Ghazali HS and Askari E and Ghazali ZS and Naghib SM and Braschler T}, title = {Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application}, journal = {Colloids and Interface Science Communications}, volume = {50}, number = {}, pages = {-}, year = {2022} } |
| RIS | TY - JOUR AU - Ghazali HS AU - Askari E AU - Ghazali ZS AU - Naghib SM AU - Braschler T TI - Lithography-Based 3D Printed Hydrogels: From Bioresin Designing to Biomedical Application JO - Colloids and Interface Science Communications VL - 50 IS - SP - EP - PY - 2022 ER - |