High capacity and rate capability of amorphous phosphorus for sodium ion batteries. J Qian, X Wu, Y Cao, X Ai, H Yang Angewandte Chemie (International ed. in English) 52 (17), 4633-4636, 2013 | 967 | 2013 |
Emerging non-aqueous potassium-ion batteries: challenges and opportunities X Wu, DP Leonard, X Ji Chemistry of Materials 29 (12), 5031-5042, 2017 | 640 | 2017 |
A ZnCl 2 water-in-salt electrolyte for a reversible Zn metal anode C Zhang, J Holoubek, X Wu, A Daniyar, L Zhu, C Chen, DP Leonard, ... Chemical communications 54 (100), 14097-14099, 2018 | 639 | 2018 |
Diffusion-free Grotthuss topochemistry for high-rate and long-life proton batteries X Wu, JJ Hong, W Shin, L Ma, T Liu, X Bi, Y Yuan, Y Qi, TW Surta, ... Nature Energy 4 (2), 123-130, 2019 | 520 | 2019 |
Highly Crystallized Na2CoFe(CN)6 with Suppressed Lattice Defects as Superior Cathode Material for Sodium-Ion Batteries X Wu, C Wu, C Wei, L Hu, J Qian, Y Cao, X Ai, J Wang, H Yang ACS applied materials & interfaces 8 (8), 5393-5399, 2016 | 437 | 2016 |
Reverse Dual-Ion Battery via a ZnCl2 Water-in-Salt Electrolyte X Wu, Y Xu, C Zhang, DP Leonard, A Markir, J Lu, X Ji Journal of the American Chemical Society 141 (15), 6338-6344, 2019 | 395 | 2019 |
Single-crystal FeFe (CN) 6 nanoparticles: a high capacity and high rate cathode for Na-ion batteries X Wu, W Deng, J Qian, Y Cao, X Ai, H Yang Journal of Materials Chemistry A 1 (35), 10130-10134, 2013 | 373 | 2013 |
A low-cost and environmentally benign aqueous rechargeable sodium-ion battery based on NaTi2 (PO4) 3–Na2NiFe (CN) 6 intercalation chemistry X Wu, Y Cao, X Ai, J Qian, H Yang Electrochemistry communications 31, 145-148, 2013 | 354 | 2013 |
Rocking‐chair ammonium‐ion battery: a highly reversible aqueous energy storage system X Wu, Y Qi, JJ Hong, Z Li, AS Hernandez, X Ji Angewandte Chemie International Edition 56 (42), 13026-13030, 2017 | 345 | 2017 |
Low-defect Prussian blue nanocubes as high capacity and long life cathodes for aqueous Na-ion batteries X Wu, Y Luo, M Sun, J Qian, Y Cao, X Ai, H Yang Nano Energy 13, 117-123, 2015 | 316 | 2015 |
A low cost, all-organic Na-ion battery based on polymeric cathode and anode W Deng, X Liang, X Wu, J Qian, Y Cao, X Ai, J Feng, H Yang Scientific reports 3 (1), 2671, 2013 | 280 | 2013 |
Energetic Aqueous Rechargeable Sodium‐Ion Battery Based on Na2CuFe(CN)6–NaTi2(PO4)3 Intercalation Chemistry X Wu, M Sun, Y Shen, J Qian, Y Cao, X Ai, H Yang ChemSusChem 7 (2), 407-411, 2014 | 263 | 2014 |
Ultra-fast NH4+ storage: strong H bonding between NH4+ and bi-layered V2O5 S Dong, W Shin, H Jiang, X Wu, Z Li, J Holoubek, WF Stickle, B Key, C Liu, ... Chem 5 (6), 1537-1551, 2019 | 262 | 2019 |
Novel Potassium-Ion Hybrid Capacitor Based on an Anode of K2Ti6O13 Microscaffolds S Dong, Z Li, Z Xing, X Wu, X Ji, X Zhang ACS applied materials & interfaces 10 (18), 15542-15547, 2018 | 232 | 2018 |
Vacancy‐free Prussian blue nanocrystals with high capacity and superior cyclability for aqueous sodium‐ion batteries X Wu, M Sun, S Guo, J Qian, Y Liu, Y Cao, X Ai, H Yang ChemNanoMat 1 (3), 188-193, 2015 | 206 | 2015 |
Prussian white analogues as promising cathode for non-aqueous potassium-ion batteries X Wu, Z Jian, Z Li, X Ji Electrochemistry Communications 77, 54-57, 2017 | 204 | 2017 |
A high‐rate aqueous proton battery delivering power below− 78 C via an unfrozen phosphoric acid H Jiang, W Shin, L Ma, JJ Hong, Z Wei, Y Liu, S Zhang, X Wu, Y Xu, ... Advanced Energy Materials 10 (28), 2000968, 2020 | 174 | 2020 |
Insights on the proton insertion mechanism in the electrode of hexagonal tungsten oxide hydrate H Jiang, JJ Hong, X Wu, TW Surta, Y Qi, S Dong, Z Li, DP Leonard, ... Journal of the American Chemical Society 140 (37), 11556-11559, 2018 | 166 | 2018 |
Low Defect FeFe(CN)6 Framework as Stable Host Material for High Performance Li-Ion Batteries X Wu, M Shao, C Wu, J Qian, Y Cao, X Ai, H Yang ACS Applied Materials & Interfaces 8 (36), 23706-23712, 2016 | 151 | 2016 |
A rechargeable battery with an iron metal anode X Wu, A Markir, Y Xu, C Zhang, DP Leonard, W Shin, X Ji Advanced Functional Materials 29 (20), 1900911, 2019 | 147 | 2019 |