Samuel K. Conlin Source Confirmed
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Researcher
University of Arkansas at Fayetteville
faculty
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Biography and Research Information
OverviewAI-generated summary
Samuel K. Conlin's research focuses on the electrochemical and catalytic processes involved in energy conversion, particularly in the context of solar-to-fuel technologies and carbon dioxide reduction. His work includes the characterization of electrocatalysts, such as those synthesized via atomic layer deposition, and their stability under various reaction conditions. Conlin has investigated methods for sustained solar-to-hydrogen production, utilizing crude glycerol oxidation and bipolar membrane separators to achieve electrolysis at low cell potentials. He has also explored the electrochemical control of surface morphology and functional properties, specifically on dendritic copper surfaces. His publications detail the characterization of catalyst function and transformations in plasma reduction reactions of CO2 and the stability of metal oxide catalyst films in non-thermal plasma CO2 reduction. Conlin collaborates with researchers at the University of Arkansas at Fayetteville, including Robert H. Coridan, Hamed Mehrabi, Joseph Joel Muhanga, and David N. Parette, with whom he shares multiple publications.
Metrics
- h-index: 3
- Publications: 12
- Citations: 52
Selected Publications
- Characterizing the stability of ultra-thin metal oxide catalyst films in non-thermal plasma CO<sub>2</sub> reduction reactions (2024) DOI
- Characterizing the Stability of Ultra-Thin Metal Oxide Catalyst Films in Non-thermal Plasma CO2 Reduction Reactions (2024) DOI
- Characterizing catalyst function and transformations in the plasma reduction of CO<sub>2</sub> on atomic layer deposition-synthesized catalysts (2024) DOI
- Characterizing Catalyst Function and Transformations in the Plasma Reduction of CO 2 on Atomic Layer Deposition-Synthesized Catalysts (2024) DOI
- Modular Solar-to-Fuel Electrolysis at Low Cell Potentials Enabled by Glycerol Electrooxidation and a Bipolar Membrane Separator (2023) DOI
- Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator (2023) DOI
- Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator (2023) DOI
- Monolithic light concentration by core–shell TiO <sub>2</sub> nanostructures templated by monodisperse polymer colloidal monolayers (2023) DOI
- Monolithic light concentration by core-shell TiO2 nanostructures templated by monodisperse polymer colloidal monolayers (2023) DOI
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces (2022) DOI
- Electrochemical control of the morphology and functional properties of hierarchically structured, dendritic Cu surfaces (2022) DOI
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation (2022) DOI
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