R. Tutar Et Al. , "In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking," NEW JOURNAL OF CHEMISTRY , vol.1, no.1, pp.1-11, 2023
Tutar, R. Et Al. 2023. In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking. NEW JOURNAL OF CHEMISTRY , vol.1, no.1 , 1-11.
Tutar, R., Koken, S. Y., Tuncaboylu, D. C., Çelebi Saltık, B., & Özeroğlu, C., (2023). In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking. NEW JOURNAL OF CHEMISTRY , vol.1, no.1, 1-11.
Tutar, Rumeysa Et Al. "In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking," NEW JOURNAL OF CHEMISTRY , vol.1, no.1, 1-11, 2023
Tutar, Rumeysa Et Al. "In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking." NEW JOURNAL OF CHEMISTRY , vol.1, no.1, pp.1-11, 2023
Tutar, R. Et Al. (2023) . "In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking." NEW JOURNAL OF CHEMISTRY , vol.1, no.1, pp.1-11.
@article{article, author={Rumeysa Tutar Et Al. }, title={In situ formation of biocompatible and ductile protein-based hydrogels via Michael addition reaction and visible light crosslinking}, journal={NEW JOURNAL OF CHEMISTRY}, year=2023, pages={1-11} }