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David William Flaherty

Adjunct Professor

Additional Campus Affiliations

Adjunct Professor, Chemical and Biomolecular Engineering

Recent Publications

Adams, J. S., Chen, H., Ricciardulli, T., Vijayaraghavan, S., Sampath, A., & Flaherty, D. W. (2024). Distinct Site Motifs Activate O2 and H2 on Supported Au Nanoparticles in Liquid Water. ACS Catalysis, 14(5), 3248-3265. https://doi.org/10.1021/acscatal.3c05072

Berdugo-Díaz, C. E., Manetsch, M. T., Lee, J., Sik Yun, Y., Yancey, D. F., Rozeveld, S. J., Luo, J., Chen, X., & Flaherty, D. W. (2024). Ester reduction on bifunctional metal-acid catalysts: Effect of metal to acid ratio. Journal of Catalysis, 430, Article 115346. https://doi.org/10.1016/j.jcat.2024.115346

Kwon, O., Zeynep Ayla, E., Potts, D. S., & Flaherty, D. W. (2024). Influence of Ti-incorporated Zeolite Topology and Pore Condensation on Vapor Phase Propylene Epoxidation Kinetics with Gaseous H2O2. Angewandte Chemie - International Edition, 63(30), Article e202405950. https://doi.org/10.1002/anie.202405950

Potts, D. S., Komar, J. K., Jacobson, M. A., Locht, H., & Flaherty, D. W. (2024). Consequences of Pore Polarity and Solvent Structure on Epoxide Ring-Opening in Lewis and Brønsted Acid Zeolites. JACS Au, 4(9), 3501-3518. https://doi.org/10.1021/jacsau.4c00398

Torres, C., Kwon, O., Potts, D. S., & Flaherty, D. W. (2024). Solvent stabilization of alkene epoxidation transition states within Ti-MFI: Interactions near and far from active sites. Journal of Catalysis, 429, Article 115288. https://doi.org/10.1016/j.jcat.2024.115288

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