Area of research
Catalysis · Mechanical Engineering
Research interest
Research interests include Ionic liquids properties and applications, Membrane Separation and Gas Transport, Carbon dioxide utilization in catalysis, and Carbon Dioxide Capture Technologies.
Acetalization of Symmetric Ketones with 1,2-Propanediol over Amorphous Solid Lewis Acids
Toward sustainable SLA 3D printing: glycerol-based 1,3-diether-2-methacrylates with solvent capability for <i>in situ</i> polymer blend formation
1,3-Diether-2-methacrylates with glycerol skeletons: tunable resins for stereolithography 3D printing
Synthesis and properties of symmetric glycerol-derived ( <i>E</i> / <i>Z</i> )-1,3-diether-2-alkenes
Tuning solvent strength can fractionate PVC into ultra-low molecular weight material with low dispersity
Synthesis and Properties of 1,3-Dimethoxyacetone: A Glycerol-Derived Solvent
Synthesis and Properties of Novel Glycerol‐Derived Liquids with Dual Functional Groups: Nonsymmetric (<i>E/Z</i>)‐Isomeric Mixtures of 1,3‐Diether‐2‐Alkenes
Improved fouling resistance in polysulfone-based ultrafiltration membranes by the addition of polar peptoid oligomers obtained from Ugi-4CR. Synthesis and characterization
Crosslinked polymeric ionic liquid stationary phases incorporating a combination of silver(I) and copper(II) ions for olefin separations by gas chromatography
CO<sub>2</sub> in Ionene–Ionic Liquid Composite Membranes
Substituent Effects on the Desalination Performance of Six-Carbon Amines in Temperature Swing Solvent Extraction
Depolymerization of PET by common alkanolamines yields tunable monomers to expand the design space of 3D-printable, intrinsically self-healing polyamide-ionenes
Serinol as a tunable and sustainable framework for high capacity, low viscosity, water-lean CO <sub>2</sub> capture and switchable solvents
Efficient extraction of polystyrene nanoplastics from water using an ionic liquid
Investigating intermolecular interactions among CO2, water and PEEK-ionene membrane using cryo ToF-SIMS and isotopic labeling
Chlorinated plastics offer unique opportunities and challenges in upcycling
Depolymerizing Polyethylene Terephthalate (PET) via “Imidazolysis” for Obtaining a Diverse Array of Intermediates from Plastic Waste
PVC Modification through Sequential Dehydrochlorination–Hydrogenation Reaction Cycles Facilitated <i>via</i> Fractionation by Green Solvents
Solvate Ionic Liquids based on branched glymes enabling high performance lithium metal batteries
Degree of Cure, Microstructures, and Properties of Carbon/Epoxy Composites Processed via Frontal Polymerization
Glycerol-derived ethers enable hydrogen-free reductive catalytic fractionation of softwood lignin into functionalized aromatic monomers
Polyimides Containing Biphenyl and Tröger’s Base Units for Gas Separation Membranes
Glycerol-Derived Solvents for Tractable Organosolv Extraction of Softwood Lignins
Impact of Ionic Modifications on Polyimide Properties for Gas Separation Applications
Upcycling of Polystyrene Waste to Poly(ionic liquid) Materials
Polymeric ionic liquids containing copper(I) and copper(II) ions as gas chromatographic stationary phases for olefin separations
In-house synthesized poly(ether ether ketone) ionenes. II. ToF-SIMS spectra in the negative ion mode
In-house synthesized poly(ether ether ketone) ionenes. I. ToF-SIMS spectra in the positive ion mode
Neat and rapid preparation of hydrophobic magnetic ionic liquids composed of transition metal chelates featuring <i>in situ</i> formation capabilities in aqueous matrices
Ether Functional Groups Enable Oxidative Dehydrogenation of Aliphatic Secondary Alcohols in Water
Collaborative Research: Rational Design of Ionene + Ionic Liquid Membranes Based on Understanding Gas Transport on Different Length Scales
EFRI E3P: CAS: Transformative Upcycling of Polymers by Activating Chemistries
IRES Track 1: Innovative Macromolecular & Polymer Research Experience in San Sebastian (IMPRESS)
REU Site: Interdisciplinary Application of Advanced Polymers for Engineering Innovations
Ionic Polyimides: Design, Synthesis, Characterization and Modeling of a Versatile Material Platform for Membrane Separations
Experimental & Computational Design of High-Performance Polymer Membranes for CO2 Capture