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L Wang, Y Lu, J Liu, M Xu, J Cheng, D Zhang, JB Goodenough
Angewandte chemie 125 (7), 2018-2021, 2013
|Removal of Interstitial H2O in Hexacyanometallates for a Superior Cathode of a Sodium-Ion Battery|
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Journal of the American Chemical Society 137 (7), 2658-2664, 2015
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Nature communications 6 (1), 1-10, 2015
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Energy & Environmental Science 7 (7), 2220-2226, 2014
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Joule 2 (1), 125-140, 2018
|A Novel High Capacity Positive Electrode Material with Tunnel‐Type Structure for Aqueous Sodium‐Ion Batteries|
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Advanced Energy Materials 5 (22), 1501005, 2015
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B Cao, GM Veith, RE Diaz, J Liu, EA Stach, RR Adzic, PG Khalifah
Angewandte Chemie 125 (41), 10953-10957, 2013
|Lithium-Doping Stabilized High-Performance P2–Na0.66Li0.18Fe0.12Mn0.7O2 Cathode for Sodium Ion Batteries|
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Journal of the American Chemical Society 141 (16), 6680-6689, 2019
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H Ji, J Wu, Z Cai, J Liu, DH Kwon, H Kim, A Urban, JK Papp, E Foley, ...
Nature Energy 5 (3), 213-221, 2020
|The Li3V2 (PO4) 3/C composites with high-rate capability prepared by a maltose-based sol–gel route|
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Electrochimica Acta 55 (22), 6761-6767, 2010
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Nature communications 9 (1), 1-12, 2018
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Advanced Energy Materials 6 (21), 1600597, 2016
|A novel P3-type Na 2/3 Mg 1/3 Mn 2/3 O 2 as high capacity sodium-ion cathode using reversible oxygen redox|
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Journal of Materials Chemistry A 7 (4), 1491-1498, 2019
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Journal of Materials Chemistry A 1 (37), 11130-11134, 2013
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Energy Storage Materials 24, 384-393, 2020
|Understanding the Low-Voltage Hysteresis of Anionic Redox in Na2Mn3O7|
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Chemistry of Materials 31 (10), 3756-3765, 2019
|Stabilizing the oxygen lattice and reversible oxygen redox chemistry through structural dimensionality in lithium‐rich cathode oxides|
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Angewandte Chemie International Edition 58 (13), 4323-4327, 2019
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