| Literature DB >> 21072253 |
Devatha P Nair1, Neil B Cramer, Timothy F Scott, Christopher N Bowman, Robin Shandas.
Abstract
In this study we introduce the use of thiol-ene photopolymers as shape memory polymer systems. The thiol-ene polymer networks are compared to a commonly utilized acrylic shape memory polymer and shown to have significantly improved properties for two different thiol-ene based polymer formulations. Using thermomechanical and mechanical analysis, we demonstrate that thiol-ene based shape memory polymer systems have comparable thermomechanical properties while also exhibiting a number of advantageous properties due to the thiol-ene polymerization mechanism which results in the formation of a homogenous polymer network with low shrinkage stress and negligible oxygen inhibition. The resulting thiol-ene shape memory polymer systems are tough and flexible as compared to the acrylic counterparts. The polymers evaluated in this study were engineered to have a glass transition temperature between 30 and 40 °C, exhibited free strain recovery of greater than 96% and constrained stress recovery of 100%. The thiol-ene polymers exhibited excellent shape fixity and a rapid and distinct shape memory actuation response.Entities:
Year: 2010 PMID: 21072253 PMCID: PMC2975462 DOI: 10.1016/j.polymer.2010.07.027
Source DB: PubMed Journal: Polymer (Guildf) ISSN: 0032-3861 Impact factor: 4.430