PaigeÌýBrimley
- Paige Brimley
- CHEMICAL & BIOLOGICAL ENGINEERING
Research Bio
Paige is a 5th year grad electrobuff. Paige's research is broadly focused on multi-scale computational modeling of electrochemical systems. SheÌýworks closely with experimentalists to develop deep insights and rational handles for control and optimization of complex reactions and interfaces. PaigeÌýutilizes a variety of techniques such as Grand-Canonical Density Functional Theory (GC-DFT), microkinetic modeling, and continuum transport modeling. HerÌýcurrent projects include studying nitrate reduction, CO2Ìýreduction, and integrated carbon capture and conversion systems. Paige is co-advised by Dr. Charles B. Musgrave.
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Paige's favorite thing to do depends on the season! SheÌýloves to ski, trail run, and climb. SheÌýalso enjoys baking bread, playing chess, learning about the plants and animals that live in the mountain west, and reading (herÌýfavorite author is Octavia Butler)!
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Education
- M.S inÌýChemical Engineering, Âé¶¹Ãâ·Ñ°æÏÂÔØ, 2021
- B.S. in Chemical Engineering, University of Utah, 2019
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Awards
- Graduate Assistantship in Areas of National Need, U.S. Department of Education, (2019-present)
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Selected Publications
- Jinyu Guo,ÌýPaige Brimley, Matthew Liu, Elizabeth Corson, Carolina Munoz,ÌýWilsonÌýSmith, William Tarpeh, "," ChemArxiv. URL.
- Brimley, Paige;ÌýAlmajed, Hussain; Alsunni, Yousef; Alherz, Abdulaziz*; Bare, Zachary; Smith, Wilson; and Charles Musgrave*, “,â€� ACS Catal., 12, 2022, 10161-10171. DOI:Ìý
- Brimley, P. N., Machalek, D., and Powell, K. M., “,â€�ÌýSmart and Sustainable Manufacturing Systems.Ìý2019.Ìývol 3, no. 2.Ìý53–67. DOI:Ìý