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Maureen Tang
Maureen Tang
Other namesMaureen Han-Mei Tang
Assistant Professor, Drexel University
Verified email at drexel.edu - Homepage
Title
Cited by
Cited by
Year
Pathways to electrochemical solar-hydrogen technologies
S Ardo, DF Rivas, MA Modestino, VS Greiving, FF Abdi, EA Llado, ...
Energy & environmental science 11 (10), 2768-2783, 2018
2792018
Two-dimensional modeling of lithium deposition during cell charging
M Tang, P Albertus, J Newman
Journal of The Electrochemical Society 156 (5), A390, 2009
2672009
Effect of molecular weight on conductivity of polymer electrolytes
AA Teran, MH Tang, SA Mullin, NP Balsara
Solid State Ionics 203 (1), 18-21, 2011
2182011
A carbon-free, precious-metal-free, high-performance O 2 electrode for regenerative fuel cells and metal–air batteries
JWD Ng, M Tang, TF Jaramillo
Energy & Environmental Science 7 (6), 2017-2024, 2014
1612014
Nickel–silver alloy electrocatalysts for hydrogen evolution and oxidation in an alkaline electrolyte
MH Tang, C Hahn, AJ Klobuchar, JWD Ng, J Wellendorff, T Bligaard, ...
Physical Chemistry Chemical Physics 16 (36), 19250-19257, 2014
1152014
Adsorbed Hydroxide Does Not Participate in the Volmer Step of Alkaline Hydrogen Electrocatalysis
S Intikhab, JD Snyder, MH Tang
ACS Catalysis 7 (12), 8314-8319, 2017
1062017
“Beyond adsorption” descriptors in hydrogen electrocatalysis
L Rebollar, S Intikhab, NJ Oliveira, Y Yan, B Xu, IT McCrum, JD Snyder, ...
ACS Catalysis 10 (24), 14747-14762, 2020
1042020
Experimental and theoretical investigation of solid-electrolyte-interphase formation mechanisms on glassy carbon
M Tang, S Lu, J Newman
Journal of The Electrochemical Society 159 (11), A1775, 2012
952012
mechanisms and consequences of chemical cross-talk in advanced Li-ion batteries
OC Harris, SE Lee, C Lees, M Tang
Journal of Physics: Energy 2 (3), 032002, 2020
832020
Electrochemical characterization of SEI-type passivating films using redox shuttles
M Tang, J Newman
Journal of The Electrochemical Society 158 (5), A530, 2011
802011
Effect of graphite orientation and lithium salt on electronic passivation of highly oriented pyrolytic graphite
M Tang, K Miyazaki, T Abe, J Newman
Journal of The Electrochemical Society 159 (5), A634, 2012
662012
Modifying the electrocatalyst–ionomer interface via sulfonated poly (ionic liquid) block copolymers to enable high-performance polymer electrolyte fuel cells
Y Li, T Van Cleve, R Sun, R Gawas, G Wang, M Tang, YA Elabd, J Snyder, ...
ACS Energy Letters 5 (6), 1726-1731, 2020
632020
Determining the viability of hydroxide-mediated bifunctional HER/HOR mechanisms through single-crystal voltammetry and microkinetic modeling
L Rebollar, S Intikhab, JD Snyder, MH Tang
Journal of The Electrochemical Society 165 (15), J3209-J3221, 2018
632018
Direct observation of active material interactions in flowable electrodes using X-ray tomography
KB Hatzell, J Eller, SL Morelly, MH Tang, NJ Alvarez, Y Gogotsi
Faraday discussions 199, 511-524, 2017
622017
Short-range contacts govern the performance of industry-relevant battery cathodes
SL Morelly, NJ Alvarez, MH Tang
Journal of Power Sources 387, 49-56, 2018
522018
Polymerized ionic liquid diblock copolymer as solid-state electrolyte and separator in lithium-ion battery
JR Nykaza, AM Savage, Q Pan, S Wang, FL Beyer, MH Tang, CY Li, ...
Polymer 101, 311-318, 2016
482016
Kinetic isotope effects quantify pH-sensitive water dynamics at the Pt electrode interface
L Rebollar, S Intikhab, JD Snyder, MH Tang
The Journal of Physical Chemistry Letters 11 (6), 2308-2313, 2020
452020
Why is the solid-electrolyte-interphase Selective? Through-Film ferrocenium reduction on highly oriented pyrolytic graphite
M Tang, J Newman
Journal of The Electrochemical Society 159 (12), A1922, 2012
432012
Transient characterization of solid-electrolyte-interphase using ferrocene
M Tang, J Newman
Journal of The Electrochemical Society 159 (3), A281, 2012
422012
Exploiting dynamic water structure and structural sensitivity for nanoscale electrocatalyst design
S Intikhab, L Rebollar, X Fu, Q Yue, Y Li, Y Kang, MH Tang, JD Snyder
Nano Energy 64, 103963, 2019
362019
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