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Tianbiao "Leo" Liu
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A total organic aqueous redox flow battery employing a low cost and sustainable methyl viologen anolyte and 4‐HO‐TEMPO catholyte
T Liu, X Wei, Z Nie, V Sprenkle, W Wang
Advanced Energy Materials 6 (3), 1501449, 2016
6612016
Long-cycling aqueous organic redox flow battery (AORFB) toward sustainable and safe energy storage
B Hu, C DeBruler, Z Rhodes, TL Liu
Journal of the American Chemical Society 139 (3), 1207-1214, 2017
5762017
TEMPO‐based catholyte for high‐energy density nonaqueous redox flow batteries
X Wei, W Xu, M Vijayakumar, L Cosimbescu, T Liu, V Sprenkle, W Wang
Advanced Materials 26 (45), 7649-7653, 2014
4792014
Status and prospects of organic redox flow batteries toward sustainable energy storage
J Luo, B Hu, M Hu, Y Zhao, TL Liu
ACS Energy Letters 4 (9), 2220-2240, 2019
3702019
Radical compatibility with nonaqueous electrolytes and its impact on an all‐organic redox flow battery
X Wei, W Xu, J Huang, L Zhang, E Walter, C Lawrence, M Vijayakumar, ...
Angewandte Chemie International Edition 54 (30), 8684-8687, 2015
3302015
A mixed-valent, Fe (II) Fe (I), diiron complex reproduces the unique rotated state of the [FeFe] hydrogenase active site
T Liu, MY Darensbourg
Journal of the American Chemical Society 129 (22), 7008-7009, 2007
3222007
Designer two-electron storage viologen anolyte materials for neutral aqueous organic redox flow batteries
C DeBruler, B Hu, J Moss, X Liu, J Luo, Y Sun, TL Liu
Chem 3 (6), 961-978, 2017
3122017
Highly reversible Mg insertion in nanostructured Bi for Mg ion batteries
Y Shao, M Gu, X Li, Z Nie, P Zuo, G Li, T Liu, J Xiao, Y Cheng, C Wang, ...
Nano letters 14 (1), 255-260, 2014
2992014
A π‐conjugation extended viologen as a two‐electron storage anolyte for total organic aqueous redox flow batteries
J Luo, B Hu, C Debruler, TL Liu
Angewandte Chemie 130 (1), 237-241, 2018
2702018
An iron complex with pendent amines as a molecular electrocatalyst for oxidation of hydrogen
T Liu, DL DuBois, RM Bullock
Nature chemistry 5 (3), 228-233, 2013
2452013
A sulfonate-functionalized viologen enabling neutral cation exchange, aqueous organic redox flow batteries toward renewable energy storage
C DeBruler, B Hu, J Moss, J Luo, TL Liu
ACS Energy Letters 3 (3), 663-668, 2018
2382018
Highly active nanostructured CoS2/CoS heterojunction electrocatalysts for aqueous polysulfide/iodide redox flow batteries
D Ma, B Hu, W Wu, X Liu, J Zai, C Shu, T Tadesse Tsega, L Chen, X Qian, ...
Nature Communications 10 (1), 3367, 2019
2342019
Unraveling pH dependent cycling stability of ferricyanide/ferrocyanide in redox flow batteries
J Luo, A Sam, B Hu, C DeBruler, X Wei, W Wang, TL Liu
Nano Energy 42, 215-221, 2017
2292017
A facile approach using MgCl 2 to formulate high performance Mg 2+ electrolytes for rechargeable Mg batteries
T Liu, Y Shao, G Li, M Gu, J Hu, S Xu, Z Nie, X Chen, C Wang, J Liu
Journal of Materials Chemistry A 2 (10), 3430-3438, 2014
2242014
Unprecedented capacity and stability of ammonium ferrocyanide catholyte in pH neutral aqueous redox flow batteries
J Luo, B Hu, C Debruler, Y Bi, Y Zhao, B Yuan, M Hu, W Wu, TL Liu
Joule 3 (1), 149-163, 2019
2192019
Coordination chemistry in magnesium battery electrolytes: how ligands affect their performance
Y Shao, T Liu, G Li, M Gu, Z Nie, M Engelhard, J Xiao, D Lv, C Wang, ...
Scientific reports 3 (1), 3130, 2013
1932013
A pH‐neutral, metal‐free aqueous organic redox flow battery employing an ammonium anthraquinone anolyte
B Hu, J Luo, M Hu, B Yuan, TL Liu
Angewandte Chemie 131 (46), 16782-16789, 2019
1882019
Improved radical stability of viologen anolytes in aqueous organic redox flow batteries
B Hu, Y Tang, J Luo, G Grove, Y Guo, TL Liu
Chemical communications 54 (50), 6871-6874, 2018
1672018
Nanocomposite polymer electrolyte for rechargeable magnesium batteries
Y Shao, NN Rajput, J Hu, M Hu, T Liu, Z Wei, M Gu, X Deng, S Xu, ...
Nano Energy 12, 750-759, 2015
1402015
Electrolyzer design for flexible decoupled water splitting and organic upgrading with electron reservoirs
W Li, N Jiang, B Hu, X Liu, F Song, G Han, TJ Jordan, TB Hanson, TL Liu, ...
Chem 4 (3), 637-649, 2018
1372018
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