Nano-structured non-platinum catalysts for automotive fuel cell application A Serov, K Artyushkova, E Niangar, C Wang, N Dale, F Jaouen, ... Nano Energy 16, 293-300, 2015 | 255 | 2015 |
Platinum supported on titanium–ruthenium oxide is a remarkably stable electrocatayst for hydrogen fuel cell vehicles J Parrondo, T Han, E Niangar, C Wang, N Dale, K Adjemian, V Ramani Proceedings of the National Academy of Sciences 111 (1), 45-50, 2014 | 149 | 2014 |
Fabrication, in-situ performance, and durability of nanofiber fuel cell electrodes M Brodt, T Han, N Dale, E Niangar, R Wycisk, P Pintauro Journal of The Electrochemical Society 162 (1), F84, 2014 | 82 | 2014 |
Real-time CO2 detection from carbon support oxidation in PEM fuel cell cathodes during potential cycling E Niangar, T Han, N Dale, K Adjemian ECS Transactions 50 (2), 1599, 2013 | 10 | 2013 |
Indium tin oxide as catalyst support for PEM fuel cell: RDE and MEA performance G Wang, E Niangar, K Huang, D Atienza, A Kumar, N Dale, K Oshihara, ... ECS Transactions 69 (17), 1179, 2015 | 9 | 2015 |
FUEL CELLS – PROTON-EXCHANGE MEMBRANE FUEL CELLS | Membranes: Elevated Temperature EV Bocarsly, A.B., Niangar Encyclopedia of Electrochemical Power Sources, 724–733, 2013 | 8* | 2013 |
Apparatus and method of in situ catalyst degradation detection during fuel cell operation EV Niangar, T Han, N Dale, K Adjemian US Patent 9,379,398, 2016 | 4 | 2016 |
System and method of in-situ diagnosis of fuel cell health during vehicle operation T Han, EV Niangar, N Dale, K Adjemian US Patent 8,751,082, 2014 | 4 | 2014 |
Lithium sulfur battery pulse charging method and pulse waveform N Ramaswamy, P Aurora, G DiLeo, X Hao, T Han, R Yadav, E Niangar, ... US Patent 9,331,364, 2016 | 3 | 2016 |
Lithium sulfur battery pulse charging method and pulse waveform N Ramaswamy, P Aurora, G DiLeo, X Hao, T Han, R Yadav, E Niangar, ... US Patent 9,866,056, 2018 | 2 | 2018 |
Non-carbon mixed-metal oxide electrocatalysts N Dale, EV Niangar, T Han, K Huang, G DiLeo US Patent 9,543,591, 2017 | 2 | 2017 |
Non-carbon mixed-metal oxide support for electrocatalysts VK Ramani, E Niangar, N Dale, T Han US Patent App. 14/169,536, 2015 | 2 | 2015 |
Method of forming a catalyst layer for a fuel cell SP Kumaraguru, MM Vora, EV Niangar US Patent App. 16/112,063, 2020 | 1 | 2020 |
Fuel cell electrodes using high density support material T Han, E Niangar US Patent 9,865,883, 2018 | 1 | 2018 |
Non-carbon catalyst support particles for use in fuel cell electrodes D Atienza, G DiLeo, E Niangar, R Yadav, A Kumar US Patent App. 14/613,485, 2016 | 1 | 2016 |
Fuel cell electrode catalyst layer having electron conducting polymers E Niangar US Patent App. 14/607,150, 2016 | 1 | 2016 |
Membrane electrode assembly with multi-layer catalyst N Dale, K Huang, E Niangar, D Atienza US Patent App. 14/592,181, 2016 | 1 | 2016 |
Mixed-metal oxide catalyst layer with sacrificial material N Dale, K Huang, E Niangar, D Atienza US Patent App. 14/592,166, 2016 | 1 | 2016 |
Lithium sulfur battery cathode electrode surface treatment during discharge N Ramaswamy, P Aurora, G DiLeo, X Hao, T Han, R Yadav, E Niangar, ... US Patent 9,379,417, 2016 | 1 | 2016 |
Templated non-carbon metal oxide catalyst support E Niangar, G DiLeo US Patent App. 14/169,574, 2015 | 1 | 2015 |