Samuel K. Conlin
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Faculty Researcher
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Samuel K. Conlin's research focuses on energy conversion and materials science, particularly in the areas of electrocatalysis and solar-to-fuel technologies. His work investigates the characterization of catalysts for sustained solar-to-hydrogen production at low cell potentials, often enabled by the oxidation of crude glycerol. Conlin also studies the electrochemical control of surface morphology and functional properties, specifically on dendritic copper surfaces. His publications explore the stability and function of ultra-thin metal oxide catalyst films in plasma reduction reactions of carbon dioxide. Additionally, his research includes the development of monolithic light concentration using core-shell titanium dioxide nanostructures. Conlin has a history of collaboration with researchers at the University of Arkansas at Fayetteville, including Robert H. Coridan and Hamed Mehrabi, with whom he has co-authored multiple publications.
Metrics
- h-index: 4
- Publications: 12
- Citations: 62
Selected Publications
-
Characterizing the stability of ultra-thin metal oxide catalyst films in non-thermal plasma CO <sub>2</sub> reduction reactions (2024)
-
Characterizing the Stability of Ultra-Thin Metal Oxide Catalyst Films in Non-thermal Plasma CO2 Reduction Reactions (2024)
-
Characterizing catalyst function and transformations in the plasma reduction of CO <sub>2</sub> on atomic layer deposition-synthesized catalysts (2024)
-
Characterizing Catalyst Function and Transformations in the Plasma Reduction of CO 2 on Atomic Layer Deposition-Synthesized Catalysts (2024)
-
Modular Solar-to-Fuel Electrolysis at Low Cell Potentials Enabled by Glycerol Electrooxidation and a Bipolar Membrane Separator (2023)
-
Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator (2023)
-
Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator (2023)
-
Monolithic light concentration by core–shell TiO <sub>2</sub> nanostructures templated by monodisperse polymer colloidal monolayers (2023)
-
Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers (2023)
-
Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces (2022)
-
Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces (2022)
-
Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation (2022)
Collaboration Network
Top Collaborators
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces
- Characterizing the stability of ultra-thin metal oxide catalyst films in non-thermal plasma CO <sub>2</sub> reduction reactions
- Characterizing catalyst function and transformations in the plasma reduction of CO <sub>2</sub> on atomic layer deposition-synthesized catalysts
- Monolithic light concentration by core–shell TiO <sub>2</sub> nanostructures templated by monodisperse polymer colloidal monolayers
Showing 5 of 12 shared publications
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces
- Characterizing catalyst function and transformations in the plasma reduction of CO <sub>2</sub> on atomic layer deposition-synthesized catalysts
- Monolithic light concentration by core–shell TiO <sub>2</sub> nanostructures templated by monodisperse polymer colloidal monolayers
- Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces
Showing 5 of 10 shared publications
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation
- Modular Solar-to-Fuel Electrolysis at Low Cell Potentials Enabled by Glycerol Electrooxidation and a Bipolar Membrane Separator
- Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator
- Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator
- Characterizing the stability of ultra-thin metal oxide catalyst films in non-thermal plasma CO <sub>2</sub> reduction reactions
- Monolithic light concentration by core–shell TiO <sub>2</sub> nanostructures templated by monodisperse polymer colloidal monolayers
- Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers
- Characterizing the Stability of Ultra-Thin Metal Oxide Catalyst Films in Non-thermal Plasma CO2 Reduction Reactions
- Characterizing the stability of ultra-thin metal oxide catalyst films in non-thermal plasma CO <sub>2</sub> reduction reactions
- Characterizing catalyst function and transformations in the plasma reduction of CO <sub>2</sub> on atomic layer deposition-synthesized catalysts
- Characterizing Catalyst Function and Transformations in the Plasma Reduction of CO 2 on Atomic Layer Deposition-Synthesized Catalysts
- Characterizing the Stability of Ultra-Thin Metal Oxide Catalyst Films in Non-thermal Plasma CO2 Reduction Reactions
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces
- Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces
- Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces
- Monolithic light concentration by core–shell TiO <sub>2</sub> nanostructures templated by monodisperse polymer colloidal monolayers
- Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation
- Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces
- Characterizing Catalyst Function and Transformations in the Plasma Reduction of CO 2 on Atomic Layer Deposition-Synthesized Catalysts
- Characterizing catalyst function and transformations in the plasma reduction of CO <sub>2</sub> on atomic layer deposition-synthesized catalysts
Similar Researchers
Based on overlapping research topics