M. Özkutlu Demirel Et Al. , "Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles," Journal of Applied Polymer Science , vol.138, no.33, 2021
Özkutlu Demirel, M. Et Al. 2021. Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles. Journal of Applied Polymer Science , vol.138, no.33 .
Özkutlu Demirel, M., Bayram, G., & Dilek Hacıhabiboğlu, Ç., (2021). Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles. Journal of Applied Polymer Science , vol.138, no.33.
Özkutlu Demirel, MERVE, GÖKNUR BAYRAM, And ÇERAĞ DİLEK HACIHABİBOĞLU. "Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles," Journal of Applied Polymer Science , vol.138, no.33, 2021
Özkutlu Demirel, MERVE Ö. Et Al. "Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles." Journal of Applied Polymer Science , vol.138, no.33, 2021
Özkutlu Demirel, M. Bayram, G. And Dilek Hacıhabiboğlu, Ç. (2021) . "Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles." Journal of Applied Polymer Science , vol.138, no.33.
@article{article, author={MERVE ÖZKUTLU DEMİREL Et Al. }, title={Controlling the foam morphology of supercritical CO2-processed poly(methyl methacrylate) with CO2-philic hybrid nanoparticles}, journal={Journal of Applied Polymer Science}, year=2021}