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Siddhartha Subramanian
Siddhartha Subramanian
Postdoctoral researcher at Eindhoven University of Technology
Verified email at tue.nl
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Cited by
Year
Electrochemical CO2 reduction in membrane-electrode assemblies
L Ge, H Rabiee, M Li, S Subramanian, Y Zheng, JH Lee, T Burdyny, ...
Chem 8 (3), 663-692, 2022
1572022
Zero-Gap Electrochemical CO2 Reduction Cells: Challenges and Operational Strategies for Prevention of Salt Precipitation
M Sassenburg, M Kelly, S Subramanian, WA Smith, T Burdyny
ACS Energy Letters 8 (1), 321-331, 2022
1292022
Cation-Driven Increases of CO2 Utilization in a Bipolar Membrane Electrode Assembly for CO2 Electrolysis
K Yang, M Li, S Subramanian, MA Blommaert, WA Smith, T Burdyny
ACS energy letters 6 (12), 4291-4298, 2021
1292021
Insertion of MXene‐Based Materials into Cu–Pd 3D Aerogels for Electroreduction of CO2 to Formate
M Abdinejad, S Subramanian, MK Motlagh, M Noroozifar, ...
Advanced Energy Materials 13 (19), 2300402, 2023
502023
CO2 Electrolysis via Surface-Engineering Electrografted Pyridines on Silver Catalysts
M Abdinejad, E Irtem, A Farzi, M Sassenburg, S Subramanian, ...
ACS catalysis 12 (13), 7862-7876, 2022
412022
High Indirect Energy Consumption in AEM-Based CO2 Electrolyzers Demonstrates the Potential of Bipolar Membranes
MA Blommaert, S Subramanian, K Yang, WA Smith, DA Vermaas
ACS applied materials & interfaces 14 (1), 557-563, 2021
412021
New insights into the electrochemical conversion of CO2 to oxalate at stainless steel 304L cathode
S Subramanian, KR Athira, MA Kulandainathan, SS Kumar, RC Barik
Journal of CO2 Utilization 36, 105-115, 2020
392020
Geometric Catalyst Utilization in Zero-Gap CO2 Electrolyzers
S Subramanian, K Yang, M Li, M Sassenburg, M Abdinejad, E Irtem, ...
ACS Energy Letters 8 (1), 222-229, 2022
382022
An Advanced Guide to Assembly and Operation of CO2 Electrolyzers
HP Iglesias van Montfort, S Subramanian, E Irtem, M Sassenburg, M Li, ...
ACS Energy Letters 8 (10), 4156-4161, 2023
272023
Spatial reactant distribution in CO 2 electrolysis: balancing CO 2 utilization and faradaic efficiency
S Subramanian, J Middelkoop, T Burdyny
Sustainable Energy & Fuels 5 (23), 6040-6048, 2021
262021
Non-invasive current collectors for improved current-density distribution during CO2 electrolysis on super-hydrophobic electrodes
HP Iglesias van Montfort, M Li, E Irtem, M Abdinejad, Y Wu, SK Pal, ...
Nature Communications 14 (1), 6579, 2023
202023
Bismuth Oxychloride Dispersed on Nitrogen‐Doped Carbon as Catalyst for the Electrochemical Reduction of CO2 to Formate
S Subramanian, VI Chukwuike, MA Kulandainathan, RC Barik
ChemElectroChem 7 (10), 2265-2273, 2020
122020
CO residence time modulates multi-carbon formation rates in a zero-gap Cu based CO 2 electrolyzer
S Subramanian, J Kok, P Gholkar, AS Kumar, HPI van Montfort, ...
Energy & Environmental Science 17 (18), 6728-6738, 2024
52024
Bipolar membranes for intrinsically stable and scalable CO2 electrolysis
KV Petrov, CI Koopman, S Subramanian, MTM Koper, T Burdyny, ...
Nature Energy 9 (8), 932-938, 2024
42024
Sequential electrocatalytic reactions along a membrane electrode assembly drive efficient nitrate-to-ammonia conversion
T Yuan, M Li, S Subramanian, J Kok, M Li, A Urakawa, O Voznyy, ...
Cell Reports Physical Science, 2024
32024
Local ionic transport enables selective PGM-free bipolar membrane electrode assembly
M Li, EW Lees, W Ju, S Subramanian, K Yang, JC Bui, ...
Nature Communications 15 (1), 8222, 2024
22024
Spatial effects define CO2 electrolysis systems
S Subramanian, HPI van Montfort, T Burdyny
Chem Catalysis, 2024
2024
CO Residence Time Modulates Multi-Carbon Formation Rates in a Copper Based Zero Gap CO2 Electrolyzer
S Subramanian, T Burdyny
Electrochemical Society Meeting Abstracts 245, 2171-2171, 2024
2024
Spatial Considerations in Membrane Electrode Assembly CO2 Electrolyzers
S Subramanian
Delft University of Technology, 2024
2024
Cation Crossover in AEM based Zero-gap CO2 Electrolyzers: A Double Edged Sword
S. Subramanian, T. Burdyny
Proceedings of MATSUS Fall 2023 Conference (MATSUSFall23), 2023
2023
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