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Russ College of Engineering and Technology
Faculty
Kody Wolfe

Kody Wolfe

Assistant Professor of Mechanical Engineering
Institute for Sustainable Energy and the Environment
Mechanical Engineering

Journal Article, Academic Journal (19)

  • Benhaddou, R., Trembly, J., Wolfe, K. (2026). Electrochemical Nutrient Recovery for the Food-Energy-Water Nexus at Municipal Wastewater Facilities: Multivariate Analyses of Seasonal Sampling and Reactor Performance. 6. ACS ES & T Engineering; 6: .
  • Gula, C., Wolfe, K., Trembly, J., Staser, J., Olson III, R., Sherida, E., Al-Majali, Y. (2025). Continuous Production of Carbon Foam from Carbon Ore.
  • Gula, C., Wolfe, K., Trembly, J., Staser, J., Olson, R., Shereda, E., Al-Majali, Y. (2025). Effect of pyrolysis on the properties of continuously extruded carbon foam from carbon ore. Journal of Analytical and Applied Pyrolysis; 191: .
  • Gula, C., Wolfe, K., Trembly, J., Staser, J., Olson, R., Shereda, E., Al-Majali, Y. (2025). Continuous Production of Carbon Foam from Carbon Ore. Carbon Trends; 19: .
  • Paul, A., Magee, R., Wilczewski, W., Wichert, N., Gula, C., Olson III, R., Shereda, E., Al-Majali, Y., Trembly, J., Wolfe, K., Staser, J., Garrick, T. (2024). Application of the Multi-Species, Multi-Reaction Model to Coal-Derived Graphite for Lithium-Ion Batteries.
  • Wolfe, K., Alahuhta, M., Himmel, M., Bomble, Y., Jennings, K., Cliffel, D. (2024). Long-Term Stability of Nicotinamide Cofactors in Common Aqueous Buffers: Implications for Cell-Free Biocatalysis.
  • Paul, A., Wolfe, K., Verbrugge, M., Koch, B., Lowe, J., Trembly, J., Staser, J., Garrick, T. (2024). Quantifying the Temperature Dependence of the Multi-Species, Multi-Reaction Model. Part 1: Parameterization for a Meso-Carbon Micro-Bead Graphite.
  • Paul, A., Wolfe, K., Verbrugge, M., Koch, B., Lowe, J., Trembly, J., Staser, J., Garrick, T. (2024). Quantifying the Temperature Dependence of the Multi-Species, Multi-Reaction Model: Part II. Estimation of Entropy Coefficient for Meso-Carbon Micro-Bead Graphite.
  • Paul, A., Magee, R., Wilczewski, W., Wichert, N., Gula, C., Olson, R., Shereda, E., Al-Majali, Y., Trembly, J., Wolfe, K., Staser, J., Garrick, T. (2024). Application of the Multi-Species, Multi-Reaction Model to Coal-Derived Graphite for Lithium-Ion Batteries. 2. Journal of the Electrochemical Society; 171: .
  • Wolfe, K., Zanganeh, A., Arthur, R., Trembly, J., Daramola, D. (2023). Considerations for Electrochemical Phosphorus Precipitation: A Figures of Merit Approach.
  • Than, L., Wolfe, K., Cliffel, D., Jennings, K. (2023). Drop-casted Photosystem I/Cytochrome c Multilayer Films for Biohybrid Solar Energy Conversion.
  • Kasick, A., Hajer, A., Wolfe, K., Velraj, S., Daramola, D., Trembly, J. (2023). Electro-Oxidative Dehydrogenation of Ethane to Ethylene Using Lanthanum-Strontium-Iron Oxide Perovskite Electrocatalysts.
  • Eaves-Rathert, J., Moyer-Vanderburgh, K., Wolfe, K., Zohair, M., Pint, C. (2022). Leveraging Impurities in Recycled Lead Anodes for Sodium-Ion Batteries.
  • Wolfe, K., Gargye, A., Mwambutsa, F., Than, L., Cliffel, D., Jennings, K. (2021). Layer-by-Layer Assembly of Photosystem I and PEDOT: PSS Biohybrid Films for Photocurrent Generation.
  • Wolfe, K., Dervishogullari, D., Passantino, J., Stachurski, C., Jennings, K., Cliffel, D. (2020). Improving the stability of photosystem I–based bioelectrodes for solar energy conversion.
  • Wolfe, K., Cliffel, D., Jennings, K. (2020). In-situ Absorbance Monitoring of NAD+ Reduction Using Platinum-Modified Carbon Paper Electrodes.
  • Stachurski, C., Click, S., Wolfe, K., Dervishogullari, D., Rosenthal, S., Jennings, K., Cliffel, D. (2020). Optical and electrochemical tuning of hydrothermally synthesized nitrogen-doped carbon dots.
  • Passantino, J., Wolfe, K., Simon, K., Cliffel, D., Jennings, K. (2020). Photosystem I Enhances the Efficiency of a Natural, Gel-Based Dye-Sensitized Solar Cell.
  • Wolfe, K., Dervishogullari, D., Stachurski, C., Passantino, J., Jennings, K., Cliffel, D. (2019). Photosystem I Multilayers within Porous Indium Tin Oxide Cathodes Enhance Mediated Electron Transfer.