N. S. Okten Et Al. , "Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid," EUROPEAN POLYMER JOURNAL , vol.114, pp.176-188, 2019
Okten, N. S. Et Al. 2019. Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid. EUROPEAN POLYMER JOURNAL , vol.114 , 176-188.
Okten, N. S., Canakci, C. C., & Orakdöğen, N., (2019). Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid. EUROPEAN POLYMER JOURNAL , vol.114, 176-188.
Okten, Nur, Cahit Can Canakci, And Nermin Orakdöğen. "Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid," EUROPEAN POLYMER JOURNAL , vol.114, 176-188, 2019
Okten, Nur S. Et Al. "Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid." EUROPEAN POLYMER JOURNAL , vol.114, pp.176-188, 2019
Okten, N. S. Canakci, C. C. And Orakdöğen, N. (2019) . "Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid." EUROPEAN POLYMER JOURNAL , vol.114, pp.176-188.
@article{article, author={Nur Sena Okten Et Al. }, title={Hertzian elasticity and triggered swelling kinetics of poly(amino ester)-based gel beads with controlled hydrophilicity and functionality: A mild and convenient synthesis via dropwise freezing into cryogenic liquid}, journal={EUROPEAN POLYMER JOURNAL}, year=2019, pages={176-188} }