Area of research
Biomedical Engineering · Materials Chemistry
Research interest
Research interests include Catalysis for Biomass Conversion, Catalytic Processes in Materials Science, Catalysis and Hydrodesulfurization Studies, and Biofuel production and bioconversion.
Biomass Demineralization: A Critical Need for Future Biorefineries
Exploring the Impact of Active Site Structure on the Conversion of Methane to Methanol in Cu‐Exchanged Zeolites
Identifying hydroxylated copper dimers in SSZ-13 <i>via</i> UV-vis-NIR spectroscopy
Microkinetic Modeling: A Tool for Rational Catalyst Design
Recycling of multilayer plastic packaging materials by solvent-targeted recovery and precipitation
Toward biomass-derived renewable plastics: Production of 2,5-furandicarboxylic acid from fructose
Oxygenated commodity chemicals from chemo‐catalytic conversion of biomass derived heterocycles
Increasing the revenue from lignocellulosic biomass: Maximizing feedstock utilization
Transition‐Metal Nitride Core@Noble‐Metal Shell Nanoparticles as Highly CO Tolerant Catalysts
Supported two- and three-dimensional vanadium oxide species on the surface of β-SiC
Correction: Supported two- and three-dimensional vanadium oxide species on the surface of β-SiC
Self-assembly of noble metal monolayers on transition metal carbide nanoparticle catalysts
Catalyst Design with Atomic Layer Deposition
Nonenzymatic Sugar Production from Biomass Using Biomass-Derived γ-Valerolactone
Targeted chemical upgrading of lignocellulosic biomass to platform molecules
Solvent Effects in Acid‐Catalyzed Biomass Conversion Reactions
Production of renewable jet fuel range alkanes and commodity chemicals from integrated catalytic processing of biomass
Atomic Layer Deposition Overcoating: Tuning Catalyst Selectivity for Biomass Conversion
Gamma-valerolactone, a sustainable platform molecule derived from lignocellulosic biomass
Bimetallic catalysts for upgrading of biomass to fuels and chemicals
Production of 5-Hydroxymethylfurfural from Glucose Using a Combination of Lewis and Brønsted Acid Catalysts in Water in a Biphasic Reactor with an Alkylphenol Solvent
Conversion of Hemicellulose into Furfural Using Solid Acid Catalysts in γ‐Valerolactone
Integrated conversion of hemicellulose and cellulose from lignocellulosic biomass
Selective Production of Large Water Soluble Organics from Biomass
Selective Conversion of Carbohydrate/Derived Chemicals Over Supported Metal Catalyst
Studies of Metal Catalysts for Conversion of Hydrocarbons with High Selectivity
Microcalorimetric, Kinetic, and Spectroscopic Studies of Multi-component Catalysts for Dehydrogenation of Light Paraffins
Microcalorimetric Studies of Supported Platinum Catalysts for Light Paraffin Conversion Reactions
Low Temperature Microcalorimeter for Studies of Reactive Molecules with Catalyst Surfaces
U.S.-China Cooperative Research (Chemical Engineering): Studies of Acid Catalysts for Hydrocarbon Processing Reactions
Selectivity Studies of Hydrocarbon Reactions Over Supported Metal Catalysts
Studies of Zeolite Catalysts for Control of Emissions; Redox Reaction and Hydrocarbon Oxidation
Catalytic Consequences of Metal Oxides Associated with MetalSurfaces: Materials Formed by Depositing Oxides on Metals and by Decomposing Organometallic Clusters
Calorimeter for Research in the Department of Chemical Engineering
Industry/University Cooperative Research Activity: Geometrically Designed Catalysts in the Study of Multi-Component Catalysis
Water-Gas Shift Catalyst Design Studies
Low and High Pressure Comparative Reaction Kinetics Studies With in Situ Mossbauer Spectroscopy
Equipment For Catalysis Research
Research Initiation - Solid State Design of Heterogeneous Catalysts