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Published on: October 17, 2016
Interpenetrating polymer networks as a route to tunable multi-responsive biomaterials: development of novel concepts
L Kris Kostanski1, Ruixiang Huang, Carlos D M Filipe
1Chemical Engineering Department, JHE 374, McMaster University, 1280 Main Street W., Hamilton, ON, Canada L8S 4L7. kostans@mcmaster.ca
Abstract:
Novel concepts are proposed for interpenetrating polymer networks (IPNs) that can be used in biomaterials responsive to multiple types of environmental stimuli. The IPNs can be a route to the tunable biomaterials whose chemical structure and/or morphology can be adjusted to the type of task to be performed. The significance of utilizing new types of processes in polymer chemistry such as the Suzuki polycondensation and living/controlled radical polymerizations to the possibility of extending/modifying component networks in the IPNs and fine-tuning their properties is emphasized. Incorporation of nanofillers into IPNs and application of monomers other than traditional alkylacrylamides as a way to enhance versatility of IPNs are also considered.

