Modeling Ce3+ and Ce4+ Structures and Redox Kinetics in Acidic Electrolytes
AIChE Annual Meeting
2021
2021 Annual Meeting
Annual Student Conference
Undergraduate Student Poster Session: Catalysis and Reaction Engineering
Monday, November 8, 2021 - 10:00am to 12:30pm
The Ce3+/Ce4+ redox couple is used in many fields, including organic synthesis, waste remediation, and energy storage. Despite the Ce3+/Ce4+ redox coupleâs broad applicability, the structures of complexes in many acidic electrolytes remains unknown. Our recent work using UV-Vis spectroscopy and DFT calculations shows that Ce3+ likely forms a complex with nine waters, whereas Ce4+ favorably undergoes single ligand exchange in seven acidic electrolytes (HCl, H2SO4, H3NSO3, CH3SO3H, HNO3, CF3SO3H, and HClO4) [1]. Here we report new experimental EXAFS and molecular dynamics-based EXAFS of cerium complexes to further elucidate the structures of the cerium complexes in solution. In addition, the Ce3+/Ce4+ redox couple provides a unique opportunity to study how changing ion complexation of a single oxidation state (Ce4+) affects the electron transfer kinetics, while the other oxidation state (Ce3+) remains a constant structure. We apply theoretical charge transfer models based on the structure of the cerium complex to understand what controls the Ce3+/Ce4+ mechanism and compare calculated redox kinetics to experimental kinetic trends. We extract kinetic parameters of an outer sphere redox reaction using DFT calculations within a polarized continuum model framework. This research increases understanding of cerium ions in acidic electrolytes and tests theoretical paradigms for charge transfer.
- Cailin A. Buchanan, Eunbyeol Ko, Spencer Cira, Mahalingam Balasubramanian, Bryan R. Goldsmith, and Nirala Singh Inorganic Chemistry2020 59 (17), 12552-12563 DOI: 10.1021/acs.inorgchem.0c01645