Robert Henry Coridan
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Professor
Also affiliated: California Institute of Technology (2013–2015); Dalhousie University (2022); California NanoSystems Institute (2012); University of Illinois Urbana-Champaign (2004–2010); University of California, Los Angeles (2012); Joint Center for Artificial Photosynthesis (2013–2014); Canadian Centre for Electron Microscopy (2022); Kavli Nanoscience Institute (2013–2014); McMaster University (2022)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Robert Henry Coridan's research focuses on the photoelectrochemistry and performance of solar-driven water-splitting devices and solar energy conversion systems. He investigates the electrical and photoelectrochemical properties of various photoelectrode materials, including tungsten oxide (WO3) and silicon (Si) tandem junctions, and core-shell tandem junction microwire arrays.
His work also includes the development and characterization of efficient electrocatalysts, such as biochar-derived molybdenum carbide for hydrogen evolution. Coridan's research extends to understanding the effects of physical phenomena, like gas bubbles, on the electrochemical behavior of oriented microwire arrays. He has received federal funding from the National Science Foundation (NSF) for research on structure-optoelectronic property relationships in quantum dots and for the acquisition of a sputtering-evaporation system for thin film deposition.
Coridan has published approximately 90 works, with a citation count of over 2,000 and an h-index of 19. He collaborates with several researchers at the University of Arkansas at Fayetteville, including Samuel K. Conlin and Hamed Mehrabi, with whom he shares multiple publications.
Metrics
- h-index: 20
- Publications: 91
- Citations: 2,097
Positions
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Professor 2023–presentUniversity of Arkansas Department of Chemistry and Biochemistry ORCID
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Associate Professor 2021–presentUniversity of Arkansas Chemistry and Biochemistry ORCID
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Assistant Professor 2015–2021University of Arkansas Chemistry and Biochemistry ORCID
Selected Publications
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Effective medium approximation for the refractive index of stratified metal oxide composites synthesized by atomic layer deposition (2026)
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High-Efficiency Solar-To-Fuel Photoelectrochemistry in Disordered Photonic Glass Electrodes (Final Technical Report) (2026)
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Harnessing emergent multiple scattering resonances in a photonic glass structure for photoelectrochemical energy conversion (2025)
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Characterizing the stability of ultra-thin metal oxide catalyst films in non-thermal plasma CO <sub>2</sub> reduction reactions (2024)
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Characterizing the Stability of Ultra-Thin Metal Oxide Catalyst Films in Non-thermal Plasma CO2 Reduction Reactions (2024)
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Gas Evolution in Water Electrolysis (2024)
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Unlocking the secrets of porous silicon formation: insights into magnesiothermic reduction mechanism using <i>in situ</i> powder X-ray diffraction studies (2024)
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Characterizing catalyst function and transformations in the plasma reduction of CO <sub>2</sub> on atomic layer deposition-synthesized catalysts (2024)
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Unlocking the Secrets of Porous Silicon Formation: Insights into Magnesiothermic Reduction Mechanism using In-situ Powder X-ray Diffraction Studies (2024)
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Characterizing Catalyst Function and Transformations in the Plasma Reduction of CO 2 on Atomic Layer Deposition-Synthesized Catalysts (2024)
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Acoustic sensing for investigating critical heat flux enhancement during pool boiling on electrodeposited copper foams (2023)
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Modular Solar-to-Fuel Electrolysis at Low Cell Potentials Enabled by Glycerol Electrooxidation and a Bipolar Membrane Separator (2023)
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Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator (2023)
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Modular solar-to-fuels electrolysis at low cell potentials enabled by glycerol electrooxidation and a bipolar membrane separator (2023)
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Acoustic Sensing for Investigating Critical Heat Flux Enhancement During Pool Boiling on Electrodeposited Copper Foams (2023)
Federal Grants 2 $903,383 total
MRI: Acquisition of a Sputtering-Evaporation System for Thin Film Deposition
Collaboration Network
Top Collaborators
- Enhanced Electrochemical Stability of TiO<sub>2</sub>-Protected, Al-doped ZnO Transparent Conducting Oxide Synthesized by Atomic Layer Deposition
- Probe metal binding mode of imine covalent organic frameworks: cycloiridation for (photo)catalytic hydrogen evolution from formate
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation
- The effects of power ultrasound (24 kHz) on the electrochemical reduction of CO2 on polycrystalline copper electrodes
- Electrochemical Control of the Morphology and Functional Properties of Hierarchically Structured, Dendritic Cu Surfaces
Showing 5 of 17 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 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
- Enhanced Electrochemical Stability of TiO<sub>2</sub>-Protected, Al-doped ZnO Transparent Conducting Oxide Synthesized by Atomic Layer Deposition
- Quaternary Core–Shell Oxynitride Nanowire Photoanode Containing a Hole-Extraction Gradient for Photoelectrochemical Water Oxidation
- Characterizing Sustained Solar-to-Hydrogen Electrocatalysis at Low Cell Potentials Enabled by Crude Glycerol Oxidation
- Electrooxidation of Glycerol on Self-Organized, Mixed Au–Pt Interfaces Formed on Ni Substrates
- Inhibition of Tafel Kinetics for Electrolytic Hydrogen Evolution on Isolated Micron Scale Electrocatalysts on Semiconductor Interfaces
Showing 5 of 10 shared publications
- Highly Efficient, Biochar‐Derived Molybdenum Carbide Hydrogen Evolution Electrocatalyst
- Unlocking the secrets of porous silicon formation: insights into magnesiothermic reduction mechanism using <i>in situ</i> powder X-ray diffraction studies
- Solid-state synthesis of UV-plasmonic Cr2N nanoparticles
- Unlocking the Secrets of Porous Silicon Formation: Insights into Magnesiothermic Reduction Mechanism using In-situ Powder X-ray Diffraction Studies
- Solid-State Synthesis of UV-Plasmonic Cr2N Nanoparticles
- Quaternary Core–Shell Oxynitride Nanowire Photoanode Containing a Hole-Extraction Gradient for Photoelectrochemical Water Oxidation
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- Semi Transparent Three-Dimensional Macroporous Quaternary Oxynitride Photoanodes for Photoelectrochemical Water Oxidation
- CeTiO <sub>2</sub> N oxynitride perovskite: paramagnetic <sup>14</sup> N MAS NMR without paramagnetic shifts
- Semi-Transparent Quaternary Oxynitride Photoanodes on GaN Underlayers
- Quaternary Core–Shell Oxynitride Nanowire Photoanode Containing a Hole-Extraction Gradient for Photoelectrochemical Water Oxidation
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- Semi Transparent Three-Dimensional Macroporous Quaternary Oxynitride Photoanodes for Photoelectrochemical Water Oxidation
- CeTiO <sub>2</sub> N oxynitride perovskite: paramagnetic <sup>14</sup> N MAS NMR without paramagnetic shifts
- Semi-Transparent Quaternary Oxynitride Photoanodes on GaN Underlayers
- 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
- Effective medium approximation for the refractive index of stratified metal oxide composites synthesized by atomic layer deposition
- Highly Efficient, Biochar‐Derived Molybdenum Carbide Hydrogen Evolution Electrocatalyst
- Mechanistic control of a galvanic replacement reaction on cuprous oxide
- Direct photolithographic patterning of cuprous oxide thin films via photoelectrodeposition
- Mechanistic Control of the Galvanic Replacement Reaction of Gold on Cuprous Oxide
- Quaternary Core–Shell Oxynitride Nanowire Photoanode Containing a Hole-Extraction Gradient for Photoelectrochemical Water Oxidation
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- CeTiO <sub>2</sub> N oxynitride perovskite: paramagnetic <sup>14</sup> N MAS NMR without paramagnetic shifts
- Semi-Transparent Quaternary Oxynitride Photoanodes on GaN Underlayers
- Quaternary Core–Shell Oxynitride Nanowire Photoanode Containing a Hole-Extraction Gradient for Photoelectrochemical Water Oxidation
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- Semi Transparent Three-Dimensional Macroporous Quaternary Oxynitride Photoanodes for Photoelectrochemical Water Oxidation
- CeTiO <sub>2</sub> N oxynitride perovskite: paramagnetic <sup>14</sup> N MAS NMR without paramagnetic shifts
- Quaternary Core–Shell Oxynitride Nanowire Photoanode Containing a Hole-Extraction Gradient for Photoelectrochemical Water Oxidation
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- Semi Transparent Three-Dimensional Macroporous Quaternary Oxynitride Photoanodes for Photoelectrochemical Water Oxidation
- CeTiO <sub>2</sub> N oxynitride perovskite: paramagnetic <sup>14</sup> N MAS NMR without paramagnetic shifts
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- Characterizing the Solvent‐Induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- Semi-Transparent Quaternary Oxynitride Photoanodes on GaN Underlayers
- Solvent-induced Inversion of Colloidal Aggregation During Electrophoretic Deposition
- 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
- Modeling, Simulation, and Implementation of Solar‐Driven Water‐Splitting Devices
- Effects of bubbles on the electrochemical behavior of hydrogen-evolving Si microwire arrays oriented against gravity
- Modellierung, Simulation und Implementierung von Zellen für die solargetriebene Wasserspaltung
- Semi-transparent quaternary oxynitride photoanodes on GaN underlayers
- Semi Transparent Three-Dimensional Macroporous Quaternary Oxynitride Photoanodes for Photoelectrochemical Water Oxidation
- Semi-Transparent Quaternary Oxynitride Photoanodes on GaN Underlayers
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