My research aims to accelerate the development of electrochemical technologies for clean water and clean energy production by advancing fundamental understanding of ion-selective materials such as membranes and electrodes. These materials preferentially absorb or transport charged particles like Lithium or Sodium ions and are found in numerous environmental technologies including water desalination systems, fuel cells, electrolyzers, and flow batteries. I seek to develop a molecular-level understanding of the factors that make these materials selective to certain ions, and use that knowledge to engineer higher-performing materials. My multi-scale research approach integrates electrochemical and thermodynamic materials characterization methods, first principles simulations, and device testing to understand how materials behave under a wide variety of conditions.
Interests
- Membrane separation processes
- Ion-selective materials
- Electrochemical technologies
- Computational materials discovery
Education
University of North Carolina at Chapel Hill
University of North Carolina at Chapel Hill
University of Texas at Austin
University of Texas at Austin
Latest
- Effect of osmotic ballast properties on the performance of a concentration gradient battery
- Tuning the Solvation Structure in Aqueous Zinc Batteries to Maximize Zn-Ion Intercalation and Optimize Dendrite-Free Zinc Plating
- Temporal variation of power production via reverse electrodialysis using coastal North Carolina waters and its correlation to temperature and conductivity
- Energy Storage Using Electro-separation Methods and Devices