This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a University of Waterloo directory, so their courses may be missing. Find their university profile.
Research
Latest papers
Pathways towards a circular economy for thermoset nanocomposites.
Chemical science · 2025 · senior author
Radical Ring-Opening Polymerization: Unlocking the Potential of Vinyl Polymers for Drug Delivery, Tissue Engineering, and More.
Biomacromolecules · 2025 · senior author
Harnessing synthetic biology to empower a circular plastics economy.
Canadian journal of microbiology · 2025
Latest funding
- $146,522
Fast-scan differential scanning calorimetry (DSC) for advanced thermal analysis of multiphase sustainable materials
NSERC · 2024 · Co-investigator
- $56,000
Topology-driven design of functional polymer networks
NSERC · 2023 · Principal investigator
- $12,500
Topology-driven design of functional polymer networks
NSERC · 2023 · Principal investigator
5 publications.
Pathways towards a circular economy for thermoset nanocomposites.
Rezaei Z, Prince E
Radical Ring-Opening Polymerization: Unlocking the Potential of Vinyl Polymers for Drug Delivery, Tissue Engineering, and More.
Ghorbani M, Prince E
Harnessing synthetic biology to empower a circular plastics economy.
Yip A, Weldon M, Dharmasiddhi I, Zubrzycki B, Euler C, Prince E, Liu Y, Ingalls B, Aucoin MG
Designing Biomimetic Strain-Stiffening into Synthetic Hydrogels.
Prince E
Nanocolloidal hydrogel mimics the structure and nonlinear mechanical properties of biological fibrous networks.
Prince E, Morozova S, Chen Z, Adibnia V, Yakavets I, Panyukov S, Rubinstein M, Kumacheva E
Fast-scan differential scanning calorimetry (DSC) for advanced thermal analysis of multiphase sustainable materials
Principal investigators: Mekonnen, Tizazu
Keywords: Composition analysis; Crosslinking; Crystallization kinetics; Curing; Heat capacity; Melting; Polymers; Rubbers; Thermal properties; Vitrimerization
Topology-driven design of functional polymer networks
Principal investigators: Prince, Elisabeth
Keywords: polymers; hydrogels; thermosets; biomaterials; biomimetics; tissue engineering; polymer networks; degradable plastics; nanostructured hydrogels; self assembly
Topology-driven design of functional polymer networks
Principal investigators: Prince, Elisabeth
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Vahid Adibnia and Elisabeth Prince: 1 shared paper
- Elisabeth Prince and Christian Euler: 1 shared paper
- Elisabeth Prince and Yilan Liu: 1 shared paper
- Christian Euler and Yilan Liu: 1 shared paper
- Chemical Engineering
- Other
Co-authors at University of Waterloo, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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