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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, materials
Google:
"liang su MIT"
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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
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