Vanzanella, V.; Scatto, M.; Zant, E.; Sisani, M.; Bastianini, M.; Grizzuti, N.
The Rheology of PEOT/PBT Block Copolymers in the Melt State and in the Thermally-Induced Sol/Gel Transition Implications on the 3D-Printing Bio-Scaffold Process. Materials 2019, 12, 226.
https://doi.org/10.3390/ma12020226
AMA Style
Vanzanella V, Scatto M, Zant E, Sisani M, Bastianini M, Grizzuti N.
The Rheology of PEOT/PBT Block Copolymers in the Melt State and in the Thermally-Induced Sol/Gel Transition Implications on the 3D-Printing Bio-Scaffold Process. Materials. 2019; 12(2):226.
https://doi.org/10.3390/ma12020226
Chicago/Turabian Style
Vanzanella, Veronica, Marco Scatto, Erwin Zant, Michele Sisani, Maria Bastianini, and Nino Grizzuti.
2019. "The Rheology of PEOT/PBT Block Copolymers in the Melt State and in the Thermally-Induced Sol/Gel Transition Implications on the 3D-Printing Bio-Scaffold Process" Materials 12, no. 2: 226.
https://doi.org/10.3390/ma12020226
APA Style
Vanzanella, V., Scatto, M., Zant, E., Sisani, M., Bastianini, M., & Grizzuti, N.
(2019). The Rheology of PEOT/PBT Block Copolymers in the Melt State and in the Thermally-Induced Sol/Gel Transition Implications on the 3D-Printing Bio-Scaffold Process. Materials, 12(2), 226.
https://doi.org/10.3390/ma12020226