Turkoglu, S.; Acha, F.; Dodiuk, H.; Kenig, S.; Mead, J.; Zhang, J.
Development of Crack-Suppressed Superhydrophilic PAA/Silica Coatings Through Optimized Particle Loading and Drying Conditions. Surfaces 2026, 9, 46.
https://doi.org/10.3390/surfaces9020046
AMA Style
Turkoglu S, Acha F, Dodiuk H, Kenig S, Mead J, Zhang J.
Development of Crack-Suppressed Superhydrophilic PAA/Silica Coatings Through Optimized Particle Loading and Drying Conditions. Surfaces. 2026; 9(2):46.
https://doi.org/10.3390/surfaces9020046
Chicago/Turabian Style
Turkoglu, Sevil, Florence Acha, Hanna Dodiuk, Shmuel Kenig, Joey Mead, and Jinde Zhang.
2026. "Development of Crack-Suppressed Superhydrophilic PAA/Silica Coatings Through Optimized Particle Loading and Drying Conditions" Surfaces 9, no. 2: 46.
https://doi.org/10.3390/surfaces9020046
APA Style
Turkoglu, S., Acha, F., Dodiuk, H., Kenig, S., Mead, J., & Zhang, J.
(2026). Development of Crack-Suppressed Superhydrophilic PAA/Silica Coatings Through Optimized Particle Loading and Drying Conditions. Surfaces, 9(2), 46.
https://doi.org/10.3390/surfaces9020046