Published October 19, 2018 | Version v1
Preprint Open

Predicting Monomers for Use in Polymerization-Induced Self- Assembly

  • 1. University of Birmingham
  • 2. Univeristy of Birmingham
  • 3. Univeristy of Warwick
  • 4. Pennsylvania State University

Description

We report an in silico method to predict monomers suitable for use in polymerization-induced self-assembly (PISA). By calculating the dependence of LogPoct/surface
area (SA) on the length of the growing polymer chain, the change in hydrophobicity during polymerization was determined. This allowed for evaluation of the capability of a monomer to polymerize to form self-assembled structures during chain extension. Using this method, we identified five new monomers for use in aqueous PISA via reversible addition-fragmentation chain transfer (RAFT) polymerization, and confirmed that these all successfully underwent PISA to produce nanostructures of various morphologies. The results obtained using this method correlated well with and predicted the differences in morphology obtained from the PISA of block copolymers of similar molecular weight but different chemical structures. Thus, we propose this method can be utilized for the discovery of new monomers for PISA and also the prediction of their self-assembly behavior.

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Funding

European Commission
SCPS - Developing sequence controlled polymers for organization, templation and recognition 615142
European Commission
FluoroDendriNostic - Combined fluorinated polymer and poly-L-lysine dendrimer as new potential contrast agents for magnetic resonance imaging 19F 703934