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David Kwabi
David Kwabi
Correu electrònic verificat a umich.edu
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Lithium–oxygen batteries: bridging mechanistic understanding and battery performance
YC Lu, BM Gallant, DG Kwabi, JR Harding, RR Mitchell, MS Whittingham, ...
Energy & Environmental Science 6 (3), 750-768, 2013
9822013
Electrolyte lifetime in aqueous organic redox flow batteries: a critical review
DG Kwabi, Y Ji, MJ Aziz
Chemical Reviews 120 (14), 6467-6489, 2020
5012020
The discharge rate capability of rechargeable Li–O 2 batteries
YC Lu, DG Kwabi, KPC Yao, JR Harding, J Zhou, L Zuin, Y Shao-Horn
Energy & Environmental Science 4 (8), 2999-3007, 2011
4882011
Influence of Li 2 O 2 morphology on oxygen reduction and evolution kinetics in Li–O 2 batteries
BM Gallant, DG Kwabi, RR Mitchell, J Zhou, CV Thompson, Y Shao-Horn
Energy & Environmental Science 6 (8), 2518-2528, 2013
4752013
Alkaline quinone flow battery with long lifetime at pH 12
DG Kwabi, K Lin, Y Ji, EF Kerr, MA Goulet, D De Porcellinis, DP Tabor, ...
Joule 2 (9), 1894-1906, 2018
4382018
Chemical and Morphological Changes of Li–O2 Battery Electrodes upon Cycling
BM Gallant, RR Mitchell, DG Kwabi, J Zhou, L Zuin, CV Thompson, ...
The Journal of Physical Chemistry C 116 (39), 20800-20805, 2012
4222012
Thermal stability of Li2O2 and Li2O for Li-air batteries: in situ XRD and XPS studies
KPC Yao, DG Kwabi, RA Quinlan, AN Mansour, A Grimaud, YL Lee, ...
Journal of The Electrochemical Society 160 (6), A824, 2013
3502013
Chemical instability of dimethyl sulfoxide in lithium–air batteries
DG Kwabi, TP Batcho, CV Amanchukwu, N Ortiz-Vitoriano, P Hammond, ...
The journal of physical chemistry letters 5 (16), 2850-2856, 2014
2832014
A phosphonate‐functionalized quinone redox flow battery at near‐neutral pH with record capacity retention rate
Y Ji, MA Goulet, DA Pollack, DG Kwabi, S Jin, D De Porcellinis, EF Kerr, ...
Advanced Energy Materials 9 (12), 1900039, 2019
2702019
A water-miscible quinone flow battery with high volumetric capacity and energy density
S Jin, Y Jing, DG Kwabi, Y Ji, L Tong, D De Porcellinis, MA Goulet, ...
ACS Energy Letters 4 (6), 1342-1348, 2019
2032019
Experimental and Computational Analysis of the Solvent‐Dependent O2/Li+‐O2 Redox Couple: Standard Potentials, Coupling Strength, and Implications for …
DG Kwabi, VS Bryantsev, TP Batcho, DM Itkis, CV Thompson, ...
Angewandte chemie 128 (9), 3181-3186, 2016
1692016
Materials challenges in rechargeable lithium-air batteries
DG Kwabi, N Ortiz-Vitoriano, SA Freunberger, Y Chen, N Imanishi, ...
MRS bulletin 39 (5), 443-452, 2014
1662014
Raman spectroscopy in lithium–oxygen battery systems
FS Gittleson, KPC Yao, DG Kwabi, SY Sayed, WH Ryu, Y Shao‐Horn, ...
ChemElectroChem 2 (10), 1446-1457, 2015
1632015
pH swing cycle for CO 2 capture electrochemically driven through proton-coupled electron transfer
S Jin, M Wu, RG Gordon, MJ Aziz, DG Kwabi
Energy & Environmental Science 13 (10), 3706-3722, 2020
1392020
Rate-Dependent Nucleation and Growth of NaO2 in Na–O2 Batteries
N Ortiz-Vitoriano, TP Batcho, DG Kwabi, B Han, N Pour, KPC Yao, ...
The journal of physical chemistry letters 6 (13), 2636-2643, 2015
1362015
Influence of edge-and basal-plane sites on the vanadium redox kinetics for flow batteries
N Pour, DG Kwabi, T Carney, RM Darling, ML Perry, Y Shao-Horn
The Journal of Physical Chemistry C 119 (10), 5311-5318, 2015
1322015
The role of iodide in the formation of lithium hydroxide in lithium–oxygen batteries
M Tułodziecki, GM Leverick, CV Amanchukwu, Y Katayama, DG Kwabi, ...
Energy & Environmental Science 10 (8), 1828-1842, 2017
1252017
Controlling solution-mediated reaction mechanisms of oxygen reduction using potential and solvent for aprotic lithium–oxygen batteries
DG Kwabi, M Tułodziecki, N Pour, DM Itkis, CV Thompson, Y Shao-Horn
The Journal of Physical Chemistry Letters 7 (7), 1204-1212, 2016
1072016
Mechanism of oxygen reduction in aprotic Li–Air batteries: the role of carbon electrode surface structure
AI Belova, DG Kwabi, LV Yashina, Y Shao-Horn, DM Itkis
The Journal of Physical Chemistry C 121 (3), 1569-1577, 2017
1042017
Oxygen reduction reaction in highly concentrated electrolyte solutions of lithium bis (trifluoromethanesulfonyl) amide/dimethyl sulfoxide
R Tatara, DG Kwabi, TP Batcho, M Tulodziecki, K Watanabe, HM Kwon, ...
The Journal of Physical Chemistry C 121 (17), 9162-9172, 2017
922017
En aquests moments el sistema no pot dur a terme l'operació. Torneu-ho a provar més tard.
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