Liang Su
Affiliations: | 2013-2017 | Chemical Engineering | Massachusetts Institute of Technology, Cambridge, MA, United States |
2017-2018 | Energy Initiative | Massachusetts Institute of Technology, Cambridge, MA, United States | |
2018- | Form Energy |
Area:
flow design, menergy storage, materialsGoogle:
"liang su MIT"Mean distance: (not calculated yet)
Cross-listing: E-Tree - Materials Tree
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Publications
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Tsai P, Wen B, Wolfman M, et al. (2018) Single-particle measurements of electrochemical kinetics in NMC and NCA cathodes for Li-ion batteries Energy & Environmental Science. 11: 860-871 |
Bai P, Guo J, Wang M, et al. (2018) Interactions between Lithium Growths and Nanoporous Ceramic Separators Joule. 2: 2434-2449 |
Su L, Badel AF, Cao C, et al. (2017) Toward an Inexpensive Aqueous Polysulfide–Polyiodide Redox Flow Battery Industrial & Engineering Chemistry Research. 56: 9783-9792 |
Li Z, Pan MS, Su L, et al. (2017) Air-Breathing Aqueous Sulfur Flow Battery for Ultralow-Cost Long-Duration Electrical Storage Joule. 1: 306-327 |
Su L, Ferrandon M, Barton JL, et al. (2017) An investigation of 2,5-di-tertbutyl-1,4-bis(methoxyethoxy)benzene in ether-based electrolytes Electrochimica Acta. 246: 251-258 |
Huang J, Pan B, Duan W, et al. (2016) The lightest organic radical cation for charge storage in redox flow batteries. Scientific Reports. 6: 32102 |
Burlatsky S, Darling RM, Novikov D, et al. (2016) Molecular Dynamics Modeling of the Conductivity of Lithiated Nafion Containing Nonaqueous Solvents Journal of the Electrochemical Society. 163 |
Su L, Darling RM, Gallagher KG, et al. (2016) An investigation of the ionic conductivity and species crossover of lithiated Nafion 117 in nonaqueous electrolytes Journal of the Electrochemical Society. 163: A5253-A5262 |
Darling R, Gallagher K, Xie W, et al. (2016) Transport property requirements for flow battery separators Journal of the Electrochemical Society. 163: A5029-A5040 |
Kowalski JA, Su L, Milshtein JD, et al. (2016) Recent advances in molecular engineering of redox active organic molecules for nonaqueous flow batteries Current Opinion in Chemical Engineering. 13: 45-52 |