Self, J., Al-Salih, H., & Abu-Lebdeh, Y. (2025). Relating the Salt Thermodynamic Factor to Solvent Activities in Ternary Multi-Solvent Electrolytes. Journal of The Electrochemical Society, 172(1), 010519 (8 pages).
Directory of Experts
Self, Julian

Directory of Experts
Self, Julian
Directory of Experts
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Julian Self (21)
- Journal articles (21)
- 2025
Journal article
- 2024
Journal article Self, J., & Bergstrom, H. K. (2024). Hypoeutectic Liquid–Solid Phase Diagrams for Ternary Lithium-Ion Battery Electrolytes. The Journal of Physical Chemistry Letters, 416-421.Journal article Self, J., & Bergstrom, H. K. (2024). Liquid-Solid Phase Diagrams for Lithium-Ion Battery Electrolytes in the Ternary Space and Beyond. Meeting abstracts (Electrochemical Society. CD-ROM), MA2024-01(2), 484-484.
- 2023
Journal article Landers, A. T., Self, J., McClary, S. A., Fritzsching, K. J., Persson, K. A., Hahn, N. T., & Zavadil, K. R. (2023). Calcium Cosalt Addition to Alter the Cation Solvation Structure and Enhance the Ca Metal Anode Performance. Journal of Physical Chemistry C, 127(49), 23664-23674.Journal article Self, J., Hahn, N. T., & Persson, K. A. (2023). Solvation Effects on the Dielectric Constant of 1 M LiPF6 in Ethylene Carbonate: Ethyl Methyl Carbonate 3:7. Energy and Environmental Materials, 8 pages.
- 2022
Journal article Hahn, N. T., Self, J., Driscoll, D. M., Dandu, N., Han, K. S., Murugesan, V., Mueller, K. T., Curtiss, L. A., Balasubramanian, M., Persson, K. A., & Zavadil, K. R. (2022). Concentration-dependent ion correlations impact the electrochemical behavior of calcium battery electrolytes. Physical Chemistry Chemical Physics, 24(2), 674-686.
- 2021
Journal article Self, J., Bergstrom, H. K., Fong, K. D., McCloskey, B. D., & Persson, K. A. (2021). A theoretical model for computing freezing point depression of lithium-ion battery electrolytes. Journal of The Electrochemical Society, 168(12), 120532-120532.Journal article Fong, K. D., Self, J., McCloskey, B. D., & Persson, K. A. (2021). Ion correlations and their impact on transport in polymer-based electrolytes. Macromolecules, 54(6), 2575-2591.Journal article Hahn, N. T., Self, J., Han, K. S., Murugesan, V., Mueller, K. T., Persson, K. A., & Zavadil, K. R. (2021). Quantifying species populations in multivalent borohydride electrolytes. Journal of Physical Chemistry B, 125(14), 3644-3652.Journal article Ringsby, A. J., Fong, K. D., Self, J., Bergstrom, H. K., McCloskey, B. D., & Persson, K. A. (2021). Transport phenomena in low temperature lithium-ion battery electrolytes. Journal of The Electrochemical Society, 168(8), 080501-080501.
- 2020
Journal article Self, J., Hahn, N. T., Fong, K. D., McClary, S. A., Zavadil, K. R., & Persson, K. A. (2020). Ion pairing and redissociaton in low-permittivity electrolytes for multivalent battery applications. Journal of Physical Chemistry Letters, 11(6), 2046-2052.Journal article Fong, K. D., Self, J., McCloskey, B. D., & Persson, K. A. (2020). Onsager transport coefficients and transference numbers in polyelectrolyte solutions and polymerized ionic liquids. Macromolecules, 53(21), 9503-9512.Journal article Hahn, N. T., Self, J., Seguin, T. J., Driscoll, D. M., Rodriguez, M. A., Balasubramanian, M., Persson, K. A., & Zavadil, K. R. (2020). The critical role of configurational flexibility in facilitating reversible reactive metal deposition from borohydride solutions. Journal of Materials Chemistry A, 8(15), 7235-7244.Journal article Borodin, O., Self, J., Persson, K. A., Wang, C., & Xu, K. (2020). Uncharted waters: Super-concentrated electrolytes. Joule, 4(1), 69-100.
- 2019
Journal article Self, J., Fong, K. D., Logan, E. R., & Persson, K. A. (2019). Ion association constants for lithium ion battery electrolytes from first-principles quantum chemistry. Journal of The Electrochemical Society, 166(15), A3554-A3558.Journal article Fong, K. D., Self, J., Diederichsen, K. M., Wood, B. M., McCloskey, B. D., & Persson, K. A. (2019). Ion transport and the true transference number in nonaqueous polyelectrolyte solutions for lithium ion batteries. ACS Central Science, 5(7), 1250-1260.Journal article Self, J., Fong, K. D., & Persson, K. A. (2019). Transport in superconcentrated LiPF₆ and LiBF₄/propylene carbonate electrolytes. ACS Energy Letters, 4(12), 2843-2849.
- 2018
Journal article Self, J., Wood, B. M., Rajput, N. N., & Persson, K. A. (2018). The interplay between salt association and the dielectric properties of low permittivity electrolytes: The case of LiPF₆ and LiAsF₆ in dimethyl carbonate. Journal of Physical Chemistry C, 122(4), 1990-1994.
- 2015
Journal article Ma, L., Self, J., Nie, M., Glazier, S., Wang, D. Y., Lin, Y.-S., & Dahn, J. R. (2015). A systematic study of some promising electrolyte additives in Li(Ni₁/₃Mn₁/₃Co₁/₃)O₂/graphite, Li(Ni₀.₅Mn₀.₃Co₀.₂)/graphite and Li(Ni₀.₆Mn₀.₂Co₀.₂)/graphite pouch cells. Journal of Power Sources, 299, 130-138.Journal article Hall, D. S., Self, J., & Dahn, J. R. (2015). Dielectric constants for quantum chemistry and li-ion batteries: Solvent blends of ethylene carbonate and ethyl methyl carbonate. Journal of Physical Chemistry C, 119(39), 22322-22330.Journal article Xia, J., Self, J., Ma, L., & Dahn, J. R. (2015). Sulfolane-based electrolyte for high voltage Li(Ni₀.₄₂Mn₀.₄₂Co₀.₁₆)O₂ (NMC442)/graphite pouch cells. Journal of The Electrochemical Society, 162(8), A1424-A1431.
- 2025