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, pp.127354, 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 , 127354.
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, 127354.
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, 127354, 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, pp.127354, 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, p.127354.
@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, pages={127354} }