Priscila Quiñonez-Ángulo
Materials Science · The Ohio State University
Publications
15
Citations
82
Est. group size
—
Recurring co-author estimate
Active years
9
Publishing since 2018
Priscila Quiñonez-Ángulo works in materials science, focusing on designing biodegradable and porous polymer materials, including polyesters and cellulose-based scaffolds, often made using environmentally friendly 'deep eutectic solvents' instead of conventional toxic solvents. Her work spans polymer chemistry, catalysis, and biomedical materials, including scaffolds intended for use in 3D cell culture. This research combines chemical synthesis methods with studies of material properties and biological compatibility.
Publication output was low and sporadic in the earlier part of the decade (2017-2021) but has grown more consistently since 2023, with a noticeable increase in output in 2024-2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Lactate-Initiated and Solvent-Free Ring-Opening Polymerization of Fused Salt-Templated Deep Eutectic Solvent for Biodegradable Macroporous Polyester Scaffolds
ACS Applied Polymer Materials · 2026
- Lactate-Initiated and Solvent-Free Ring-Opening Polymerizationof Fused Salt-Templated Deep Eutectic Solvent for Biodegradable MacroporousPolyester Scaffolds
Figshare · 2026
- From Colloids to Hydrogels: Concentration-Dependent Cytocompatibility of Carboxylated Cellulose Nanocrystals Prepared via Deep Eutectic Solvents
Langmuir · 2026
- From Colloidsto Hydrogels: Concentration-DependentCytocompatibility of Carboxylated Cellulose Nanocrystals Preparedvia Deep Eutectic Solvents
Figshare · 2026
- Enhanced Cell Proliferation and Maturation Using Carboxylated Bacterial Nanocellulose Scaffolds for 3D Cell Culture
ACS Applied Materials & Interfaces · 2025
- Boosting the Solubility and Bioactivity of Flavonoids in Nontoxic Betaine-Based Natural Eutectic Solvents
ACS Sustainable Chemistry & Engineering · 2025
- Ring-opening polymerization of emulsion-templated deep eutectic system monomer for macroporous polyesters with controlled degradability
RSC Applied Polymers · 2024
- Author response for "Ring-opening polymerization of emulsion-templated deep eutectic system monomer for macroporous polyesters with controlled degradability"
2024
- Author response for "Ring-opening polymerization of emulsion-templated deep eutectic system monomer for macroporous polyesters with controlled degradability"
2024
- Low-Temperature and Solventless Ring-Opening Polymerization of Eutectic Mixtures of <scp>l</scp>-Lactide and Lactones for Biodegradable Polyesters
ACS Applied Polymer Materials · 2023
- PEGMAs with short and long side chains: what is the effect in the formation of stars and brushes by RAFT polymerization?
Reaction Chemistry & Engineering · 2023
- The influences of monomer structure and solvent on the radical copolymerization of tertiary amine and PEGylated methacrylates
Polymer Chemistry · 2021
- Ethylene Polymerization via Zirconocene Catalysts and Organoboron Activators: An Experimental and Kinetic Modeling Study
Processes · 2021
- Ethylene Polymerization via Zirconocene Catalysts and Organoboron Activators: An Experimental and Kinetic Modeling Study
Preprints.org · 2020
- A kinetic study, thermal analysis and kinetic modeling on homo and copolymerization of 2-(N,N-diethylamino)ethyl methacrylate and PEGMA
European Polymer Journal · 2018
- ACS Applied Polymer Materials×2
- Figshare×2
- ACS Applied Materials & Interfaces×1
- ACS Sustainable Chemistry & Engineering×1
- European Polymer Journal×1
- Zhongzheng Cai
Materials Science · The Ohio State University
- Judit E. Puskás
Materials Science · The Ohio State University
- Zhen Zhang
Materials Science · Purdue University West Lafayette
- Péter Polyák
Materials Science · The Ohio State University
- Geeta Pokhrel
Materials Science · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile