M. F. Canbolat Et Al. , "Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers," Journal of Applied Polymer Science , vol.134, no.4, 2017
Canbolat, M. F. Et Al. 2017. Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers. Journal of Applied Polymer Science , vol.134, no.4 .
Canbolat, M. F., Savas, H. B., & Gultekin, F., (2017). Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers. Journal of Applied Polymer Science , vol.134, no.4.
Canbolat, M., Hasan Basri Savas, And FATİH GÜLTEKİN. "Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers," Journal of Applied Polymer Science , vol.134, no.4, 2017
Canbolat, M. F. Et Al. "Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers." Journal of Applied Polymer Science , vol.134, no.4, 2017
Canbolat, M. F. Savas, H. B. And Gultekin, F. (2017) . "Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers." Journal of Applied Polymer Science , vol.134, no.4.
@article{article, author={M. Fatih Canbolat Et Al. }, title={Improved catalytic activity by catalase immobilization using γ-cyclodextrin and electrospun PCL nanofibers}, journal={Journal of Applied Polymer Science}, year=2017}