Xiao-Qing Yang
Affiliations: | Chemistry Division | Brookhaven National Laboratory, Upton, NY, United States |
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Sign in to add traineeSeong-Min Bak | post-doc | 2013-2016 | Brookhaven National Lab |
Seong-Min Bak | research scientist | 2016- | Brookhaven National Lab |
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Publications
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Zhang X, Pollard TP, Tan S, et al. (2025) Li(ionophore) nanoclusters engineered aqueous/non-aqueous biphasic electrolyte solutions for high-potential lithium-based batteries. Nature Nanotechnology |
Tan S, Kuai D, Yu Z, et al. (2024) Evolution and Interplay of Lithium Metal Interphase Components Revealed by Experimental and Theoretical Studies. Journal of the American Chemical Society |
Li AM, Borodin O, Pollard TP, et al. (2024) Methylation enables the use of fluorine-free ether electrolytes in high-voltage lithium metal batteries. Nature Chemistry |
Rahman MM, Tan S, Yang Y, et al. (2023) An inorganic-rich but LiF-free interphase for fast charging and long cycle life lithium metal batteries. Nature Communications. 14: 8414 |
Liu Y, Sun S, Tan S, et al. (2023) Enhancing lithium storage performance of bimetallic oxides anode by synergistic effects. Journal of Colloid and Interface Science. 641: 386-395 |
Xu J, Zhang J, Pollard TP, et al. (2023) Electrolyte design for Li-ion batteries under extreme operating conditions. Nature |
Tan S, Kim JM, Corrao A, et al. (2022) Unravelling the convoluted and dynamic interphasial mechanisms on Li metal anodes. Nature Nanotechnology |
Lin R, He Y, Wang C, et al. (2022) Characterization of the structure and chemistry of the solid-electrolyte interface by cryo-EM leads to high-performance solid-state Li-metal batteries. Nature Nanotechnology |
Shadike Z, Tan S, Lin R, et al. (2021) Engineering and characterization of interphases for lithium metal anodes. Chemical Science. 13: 1547-1568 |
Shadike Z, Tan S, Wang QC, et al. (2021) Review on organosulfur materials for rechargeable lithium batteries. Materials Horizons. 8: 471-500 |