The objective of this major is to help students master the relationships between the chemical structure of organic macro-molecules (polymers, bio-macromolecules, etc.), the microstructure of their derivative materials, the main synthesis methods and their implementation, and structural and functional properties occurring at a macroscopic and industrial level as well as at the level of nanotechnology and its applications.
> Legend ![]() |
||||||||
De 20 à 30 CREDITS parmi | ||||||||
Annual block | ||||||||
1 | 2 | |||||||
![]() |
||||||||
![]() |
Project in Polymer Science | Charles-André Fustin , Alain Jonas | 0h+45h | 5 credits | 2q | x | x | |
![]() |
||||||||
![]() |
Physical Chemistry and Chemistry of Polymers | Jean-François Gohy , Alain Jonas | 45h+15h | 5 credits | 1q | x | x | |
![]() |
||||||||
![]() |
Introduction to protein biotechnology | Pierre Morsomme , Patrice Soumillion | 22.5h+7.5h | 3 credits | 1q | x | x | |
![]() |
Macromolecular Nanotechnology | Sophie Demoustier , Karine Glinel (compensates Bernard Nysten) , Karine Glinel , Jean-François Gohy , Bernard Nysten (coord.) | 45h+15h | 5 credits | 2q | x | x | |
![]() |
||||||||
![]() |
Polymer Materials | Christian Bailly , Bernard Nysten , Evelyne Van Ruymbeke (compensates Bernard Nysten) | 45h+15h | 5 credits | 1q | x | x | |
![]() |
Rheometry and Polymer Processing | Christian Bailly , Evelyne Van Ruymbeke | 30h+22.5h | 5 credits | 2q | x | x |