Theoretical method development

Theoretical method development

At SUNCAT we develop theoretical methods for understanding heterogeneously catalytic reactions through atomic-scale simulations. We for example work on improving atomic-scale simulation methodology, devising methods for treating electrochemical systems, establishing methods for addressing uncertainties in electronic structure theory, establishing bench mark simulations beyond the density functional theory level, improving the treatment of kinetics and adsorption energetics, devising descriptor-based search methods, establishing software tools and methods for sharing our simulations with other groups. All the theoretical method development projects have a common focus - to construct a better foundation for analyzing key scientific and technical challenges for energy transformations, chemical production, and environmental catalysis.

Publications

Displaying 81 - 87 of 87

Viswanath Pasumarthi, Henry Yu, Sneha A Akhade, Frank Abild-Pedersen, Joel B Varley, Michal Bajdich. Journal of Physical Chemistry C. 2023.

Sudarshan Vijay, Hendrik Heenen, Aayush Singh, Karen Chan, Johannes Voss. Journal of Computational Chemistry. 2023.

Shikha Saini , Joakim Halldin Stenlid, Shyam Deo, Philipp N. Plessow, Frank Abild-Pedersen. ACS Catalysis, 14, 874-885. 2024.

Benjamin M. Comer, Neha Bothra, Jaclyn R. Lunger, Frank Abild-Pedersen, Michal Bajdich, Kirsten T. Winther. ACS Catalysis, 14,, 5286-5296. 2024.

Johannes Voss. Journal of Computational Chemistry. 2024.

Filippo Balzaretti, Johannes Voss. Journal of Chemical Theory and Computation. 2024.

Roman Fanta, Michal Bajdich. The Journal of Physical Chemistry Letters