O. Duman Et Al. , "Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere," Separation and Purification Technology , vol.345, 2024
Duman, O. Et Al. 2024. Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere. Separation and Purification Technology , vol.345 .
Duman, O., Cengiz, C., Özcan Diker, C., Cengiz, U., Güreşir, S. M., & Tunç, S., (2024). Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere. Separation and Purification Technology , vol.345.
Duman, OSMAN Et Al. "Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere," Separation and Purification Technology , vol.345, 2024
Duman, OSMAN Et Al. "Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere." Separation and Purification Technology , vol.345, 2024
Duman, O. Et Al. (2024) . "Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere." Separation and Purification Technology , vol.345.
@article{article, author={OSMAN DUMAN Et Al. }, title={Effect of alkoxysilane chain length on the surface, stability, sorption and oil–water separation properties of novel superhydrophobic porous sorbent materials produced using innovative drainage technique in scCO2 atmosphere}, journal={Separation and Purification Technology}, year=2024}