Melissa Meyerson

Postdoctoral Researcher

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Postdoctoral Researcher

mlmeyer@sandia.gov

(505) 844-9954

Biography

Melissa Meyerson is a materials scientist and chemist at Sandia National Laboratories. She completed her bachelor’s degree in chemistry at the University of Maryland, College Park and her PhD in chemistry at the University of Texas at Austin where she researched electrode materials to improve the energy density of batteries. Her research interests include materials development and characterization with a focus on materials for energy storage.

Research Interests

  • Materials for energy storage, especially anode materials for lithium batteries
  • Electrochemical and spectroscopic characterization of materials

Education

  • Ph.D. in Chemistry, University of Texas at Austin, 2020
  • B.S. in Chemistry, University of Maryland, 2014

Google Scholar

Melissa Meyerson, Ph.D.

Publications

  • Marinelarena-Diaz, A., Meyerson, M., Maraschky, A., Small, L., & Small, L. (2022). Evaluation of bio-inspired flow fields in a mediated Li-S flow battery for grid energy storage. https://doi.org/10.2172/1884907 Publication ID: 80078
  • Meyerson, M., Rosenberg, S.G., Small, L., & Small, L. (2022). A Mediated Li-S Flow Battery for Grid-Scale Energy Storage. ACS Applied Energy Materials, 5(4), pp. 4202-4211. https://doi.org/10.1021/acsaem.1c03673 Publication ID: 80580
  • Spoerke, E., Gross, M., Meyerson, M., Small, L., Percival, S.J., & Percival, S.J. (2021). Low Temperature Molten Sodium Batteries for Long-Duration Energy Storage [Conference Presenation]. https://doi.org/10.2172/1905212 Publication ID: 77029
  • Meyerson, M., Rosenberg, S.G., Dickens, S., Small, L., & Small, L. (2021). Mediated Li-S Flow Battery for Grid-Scale Energy Storage [Conference Presenation]. https://doi.org/10.2172/1895553 Publication ID: 76525
  • Meyerson, M., Rosenberg, S.G., Dickens, S., Small, L., & Small, L. (2021). Mediated Li-S Flow Battery for Grid-Scale Energy Storage [Conference Presenation]. https://doi.org/10.2172/1899467 Publication ID: 76868
  • Small, L., Lee, R., Percival, S.J., Gross, M., Peretti, A., Meyerson, M., Spoerke, E., & Spoerke, E. (2021). Understanding Electrochemical Processes in Molten Salt Catholytes for Low Temperature Molten Sodium Batteries [Conference Presenation]. https://doi.org/10.2172/1900348 Publication ID: 76973
  • Meyerson, M., Small, L., & Small, L. (2021). Mediated Lithium-Sulfur Flow Batteries [Conference Poster]. https://doi.org/10.2172/1891595 Publication ID: 76171
  • Small, L., Gross, M., Percival, S.J., Peretti, A., Lee, R., Maraschky, A., Meyerson, M., hill, R., Cheng, Y., Spoerke, E., & Spoerke, E. (2021). Low Temperature Molten Sodium Batteries [Conference Presenation]. https://doi.org/10.2172/1891601 Publication ID: 76176
  • Meyerson, M., Small, L., & Small, L. (2021). Redox Mediated Li-S Flow Battery for Grid Scale Energy Storage [Conference Poster]. https://doi.org/10.2172/1867346 Publication ID: 78380
  • Meyerson, M., Small, L., & Small, L. (2021). Mediated Lithium-Sulfur Flow Battery for Grid-Scale Energy Storage [Conference Poster]. https://doi.org/10.2172/1862763 Publication ID: 77978
10 publications