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  • ecsarxiv · 280 ✖
id title description date_created ▲ date_modified date_published original_publication_date publication_doi provider is_published reviews_state version is_latest_version preprint_doi license tags_list tags_data contributors_list contributors_data first_author subjects_list subjects_data download_url has_coi conflict_of_interest_statement has_data_links has_prereg_links prereg_links prereg_link_info last_updated
ycmn4_v1 Age Ain’t Just a Number: Leveraging Recurrent Neural Networks to Predict Fuel Cell Degradation The long-term durability is beside costs currently the biggest challenge for the commercialization of Proton Exchange Membrane Fuel Cells (PEMFC). Precise monit… 2025-04-03T15:35:25.665904 2025-04-03T15:48:22.793738 2025-04-03T15:47:31.404737     ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/ycmn4_v1 CC-By Attribution-NonCommercial-NoDerivatives 4.0 International Anomaly Detection; Digital Twin; Fuel Cells; Machine Learning; Monitoring ["Anomaly Detection", "Digital Twin", "Fuel Cells", "Machine Learning", "Monitoring"] Laurin Holz; Lukas Klass; Alexander Kabza; Frank Sehnke; Markus Hölzle [{"id": "xrm83", "name": "Laurin Holz", "index": 0, "orcid": null, "bibliographic": true}, {"id": "f5sru", "name": "Lukas Klass", "index": 1, "orcid": "0000-000… Laurin Holz Engineering; Physical Sciences and Mathematics; Computational Engineering; Energy; Computer Sciences; Fuel Cells; Artificial Intelligence and Robotics [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ae4667e6000f98dd9d", "text": "Physical Sciences and Mathematics"}, {"id": "5ae728af466… https://osf.io/download/67eeaae83ee99dbee16dde9e 0   not_applicable not_applicable []   2025-04-09T21:06:18.944586
xhn73_v3 Open-circuit Voltage Anomalies in Yttria-stabilized Zirconia and Samaria-doped Ceria Bilayered Electrolytes (Considering Jarzynski’s Equality in Wagner’s Equati… The OCV (open-circuit voltage) using SDC (samaria-doped ceria) electrolytes is explained by Wagner’s equation. According to this theory, even if there is no ext… 2025-04-02T11:29:44.611181 2025-04-02T12:20:21.648407 2025-04-02T12:19:43.611601 2019-01-29T15:00:00   ecsarxiv 1 accepted 3 1 https://doi.org/10.1149/osf.io/xhn73_v3 CC-By Attribution 4.0 International SOFC; Wagner's equation; doped Ceria ["SOFC", "Wagner's equation", "doped Ceria"] Tomofumi Miyahita [{"id": "ma3cy", "name": "Tomofumi Miyahita", "index": 0, "orcid": "0000-0001-5046-5875", "bibliographic": true}] Tomofumi Miyahita Engineering; Materials Science and Engineering; Physical Sciences and Mathematics; Chemistry; Materials Chemistry; Solid Oxide Fuel Cells [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ae4667e6000f98dd9c", "text": "Materials Science and Engineering"}, {"id": "5ae728ae466… https://osf.io/download/67ed1fc3cf9e3a761f8b805e 0   available available ["https://iopscience.iop.org/article/10.1149/MA2021-01412048mtgabs"]   2025-04-09T21:06:17.633073
xhn73_v2 Open-circuit Voltage Anomalies in Yttria-stabilized Zirconia and Samaria-doped Ceria Bilayered Electrolytes (Considering Jarzynski’s Equality in Wagner’s Equati… The OCV (open-circuit voltage) using SDC (samaria-doped ceria) electrolytes is explained by Wagner’s equation. According to this theory, even if there is no ext… 2025-03-26T10:26:27.713924 2025-03-26T10:36:41.517622 2025-03-26T10:36:17.532156 2019-01-29T15:00:00   ecsarxiv 1 accepted 2 1 https://doi.org/10.1149/osf.io/xhn73_v2 CC-By Attribution 4.0 International SOFC; Wagner's equation; doped Ceria ["SOFC", "Wagner's equation", "doped Ceria"] Tomofumi Miyahita [{"id": "ma3cy", "name": "Tomofumi Miyahita", "index": 0, "orcid": "0000-0001-5046-5875", "bibliographic": true}] Tomofumi Miyahita Engineering; Materials Science and Engineering; Physical Sciences and Mathematics; Chemistry; Materials Chemistry; Solid Oxide Fuel Cells [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ae4667e6000f98dd9c", "text": "Materials Science and Engineering"}, {"id": "5ae728ae466… https://osf.io/download/67e3d6c8ff2e801337ceab35 0   available available ["https://iopscience.iop.org/article/10.1149/MA2021-01412048mtgabs"]   2025-04-09T21:06:17.217932
mgujh_v1 A User-Friendly Jupyter Notebook for Simplified Differential Pulse Voltammetry Analysis of Dihydroxy Phenols Differential pulse voltammetry (DPV) is a well-established electrochemical technique widely employed for quantitatively determining diverse analytes, particular… 2025-02-05T17:49:27.292137 2025-02-05T18:20:00.214547 2025-02-05T18:19:22.221525     ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/mgujh_v1 CC-By Attribution 4.0 International   [] Aravindan Natarajan; Preethi Sankaranarayanan [{"id": "25enh", "name": "Aravindan Natarajan", "index": 0, "orcid": "0000-0002-2190-9825", "bibliographic": true}, {"id": "m8cbv", "name": "Preethi Sankaranara… Aravindan Natarajan Physical Sciences and Mathematics; Chemistry; Computer Sciences; Numerical Analysis and Scientific Computing; Electroanalytical; Software Engineering; Analytica… [{"id": "5ae728ae4667e6000f98dd9d", "text": "Physical Sciences and Mathematics"}, {"id": "5ae728b24667e6000f98ddde", "text": "Chemistry"}, {"id": "5ae728b44667e… https://osf.io/download/67a3a50dc671ff1901cc917d 0   available not_applicable []   2025-04-09T21:06:16.299171
bcvw4_v1 Rethinking electrolyzer design for optimal waste-heat utilization Green hydrogen and electric heating have received attention as separate solutions to make more sustainable material and energy supply networks. However, their c… 2024-11-15T16:55:54.623802 2024-11-15T17:11:03.157173 2024-11-15T17:10:36.154751     ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/bcvw4 CC-By Attribution 4.0 International electric heating; heat pumps; hydrogen; low-temperature electrolysis; optimization; process systems engineering; synergy; techno-economic analysis; waste-heat u… ["electric heating", "heat pumps", "hydrogen", "low-temperature electrolysis", "optimization", "process systems engineering", "synergy", "techno-economic analys… Aldwin Lois Galvan Cara; Dominik Bongartz [{"id": "9r2qm", "name": "Aldwin Lois Galvan Cara", "index": 0, "orcid": null, "bibliographic": true}, {"id": "8w6r4", "name": "Dominik Bongartz", "index": 1, "… Aldwin Lois Galvan Cara Engineering; Electrochemical Engineering; Energy; Chemical Engineering; Simulation; Mathematical Modeling; Electrolyzers; Other Chemical Engineering [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ad4667e6000f98dd98", "text": "Electrochemical Engineering"}, {"id": "5ae728b24667e6000… https://osf.io/download/67377d33bbc22d9ef79430fc 0   not_applicable not_applicable []   2025-04-09T21:06:12.090905
5qrn3_v1 Big Brother is Watching You: Leveraging Artificial Intelligence for Automated Fuel Cell Monitoring (Technical Report) In this technical report, we present our second-generation digital twin model for monitoring of fuel cells. This digital twin combines two data-driven machine l… 2024-11-13T08:36:45.425136 2024-11-13T10:16:23.671100 2024-11-13T10:13:37.213268 2024-09-28T22:00:00 https://doi.org/10.1149/11405.0645ecst ecsarxiv 0 withdrawn 1 1 https://doi.org/10.1149/osf.io/5qrn3 CC-By Attribution-NonCommercial-NoDerivatives 4.0 International Anomaly Detection; Digital Twin; Fuel Cell; Machine Learning; Monitoring; PEMFC ["Anomaly Detection", "Digital Twin", "Fuel Cell", "Machine Learning", "Monitoring", "PEMFC"] Lukas Klass; Laurin Holz; Lukas König; Alexander Kabza; Frank Sehnke; Katharina Strecker; Markus Hölzle [{"id": "f5sru", "name": "Lukas Klass", "index": 0, "orcid": "0000-0002-1379-3607", "bibliographic": true}, {"id": "xrm83", "name": "Laurin Holz", "index": 1, "… Lukas Klass Engineering [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}]   0   not_applicable not_applicable []   2025-04-09T21:06:12.552729
8ehbw_v1 Early-Stage Techno-Economic Evaluation of Electrochemical Nitrogen Reduction to Ammonia Based on Catalyst Performance The direct electrochemical reduction of nitrogen offers a promising alternative to produce ammonia, an important chemical and potential energy carrier. While cu… 2024-11-11T08:36:59.470905 2025-01-17T08:30:13.296685 2024-11-11T11:33:45.916774     ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/8ehbw CC-By Attribution-NonCommercial-NoDerivatives 4.0 International Catalyst Evaluation; NRR; Nitrogen Reduction Reaction; Performance Requirements; Power-to-Ammonia; Techno-Economic Analysis ["Catalyst Evaluation", "NRR", "Nitrogen Reduction Reaction", "Performance Requirements", "Power-to-Ammonia", "Techno-Economic Analysis"] Michael J. Rix; Alexander Mitsos [{"id": "j586k", "name": "Michael J. Rix", "index": 0, "orcid": "0009-0008-3915-5073", "bibliographic": true}, {"id": "w5bse", "name": "Alexander Mitsos", "inde… Michael J. Rix Engineering; Electrochemical Engineering; Physical Sciences and Mathematics; Systems Analysis; Chemistry; Chemical Engineering; Mathematical Modeling; Electroch… [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ad4667e6000f98dd98", "text": "Electrochemical Engineering"}, {"id": "5ae728ae4667e6000… https://osf.io/download/6731c2772128ec2f214d6e15 0   not_applicable not_applicable []   2025-04-09T21:06:23.565578
3b5qw_v1 Seawater Electrolysis at Ultra-High Current Density: A Comparative Analysis of Cylindrical versus Conical Electrodes Seawater electrolysis preferentially leans towards Chlorine Evolution Reaction (CER) over Oxygen Evolution Reactions (OER) under conventional conditions, but OE… 2024-11-03T23:00:41.164170 2024-11-04T12:16:03.707137 2024-11-04T12:15:51.174114 2024-11-03T07:00:00   ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/3b5qw CC-By Attribution-NonCommercial-NoDerivatives 4.0 International CER; OER; chlorine; electrolysis; energy; graphite; high current density; hydrogen; instrumentation; oxygen; seawater ["CER", "OER", "chlorine", "electrolysis", "energy", "graphite", "high current density", "hydrogen", "instrumentation", "oxygen", "seawater"] Søren Tornøe; John Koster; Andy V. Surin; Jacob H. Sands; Nobuhiko Paul Kobayashi [{"id": "w4ejp", "name": "S\u00f8ren Torn\u00f8e", "index": 0, "orcid": null, "bibliographic": true}, {"id": "r8tdy", "name": "John Koster", "index": 1, "orcid"… Søren Tornøe Engineering; Electrochemical Engineering; Other Electrochemical Engineering; Energy; Electrolyzers [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ad4667e6000f98dd98", "text": "Electrochemical Engineering"}, {"id": "5ae728b04667e6000… https://osf.io/download/672800b0696c9d9b1b2e6f55 0   no not_applicable []   2025-04-09T21:06:20.893876
5u329_v1 Impact of pH on Ethanol Electro-oxidation in Seawater-like Electrolytes: Implications for Ocean-based Mitigation Strategies This study investigates the electro-oxidation of ethanol in seawater-like electrolytes with adjusted pH, exploring its potential for CO₂ mitigation strategies. … 2024-10-13T23:12:25.475673 2024-10-18T16:17:22.122512 2024-10-18T16:17:22.098843     ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/5u329_v1 CC0 1.0 Universal   [] Thiago Ferraz; Germano Tremiliosi-Filho; Hamilton Varela [{"id": "dxbmu", "name": "Thiago Ferraz", "index": 0, "orcid": "0000-0001-5245-6761", "bibliographic": true}, {"id": "v8np9", "name": "Germano Tremiliosi-Filho"… Thiago Ferraz Engineering; Physical Sciences and Mathematics; Chemistry; Energy; Electrocatalysis; Fuel Cells; Electrolyzers; Electrochemistry [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ae4667e6000f98dd9d", "text": "Physical Sciences and Mathematics"}, {"id": "5ae728b2466… https://osf.io/download/670c54543fb82a20cea5e9d7 0   not_applicable not_applicable []   2025-04-09T21:06:16.297350
g9p7f_v1 A new Synthesis Route for Long Lasting and Rapid Charging Prussian Blue Analogue for Desalination and Aqueous Batteries This work reports a novel synthesis route for a Prussian blue analogue with high-rate capability and excellent cyclability in an aqueous electrolyte. The synthe… 2024-10-07T01:29:02.447490 2024-10-18T16:15:00.740811 2024-10-18T16:14:34.103652     ecsarxiv 1 accepted 1 1 https://doi.org/10.1149/osf.io/g9p7f GNU General Public License (GPL) 3.0 PBA Na-ion ["PBA Na-ion"] Jacob Morton; Louis Hartmann; Matthieu Dubarry [{"id": "2vpqy", "name": "Jacob Morton", "index": 0, "orcid": null, "bibliographic": true}, {"id": "j2uvh", "name": "Louis Hartmann", "index": 1, "orcid": null,… Jacob Morton Engineering; Electrochemical Engineering [{"id": "5ae728ad4667e6000f98dd92", "text": "Engineering"}, {"id": "5ae728ad4667e6000f98dd98", "text": "Electrochemical Engineering"}] https://osf.io/download/670339700ba129500032d96a 0   not_applicable not_applicable []   2025-04-09T21:06:20.848028

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CREATE TABLE [preprints_ui] (
   [id] TEXT PRIMARY KEY,
   [title] TEXT,
   [description] TEXT,
   [date_created] TEXT,
   [date_modified] TEXT,
   [date_published] TEXT,
   [original_publication_date] TEXT,
   [publication_doi] TEXT,
   [provider] TEXT,
   [is_published] INTEGER,
   [reviews_state] TEXT,
   [version] INTEGER,
   [is_latest_version] INTEGER,
   [preprint_doi] TEXT,
   [license] TEXT,
   [tags_list] TEXT,
   [tags_data] TEXT,
   [contributors_list] TEXT,
   [contributors_data] TEXT,
   [first_author] TEXT,
   [subjects_list] TEXT,
   [subjects_data] TEXT,
   [download_url] TEXT,
   [has_coi] INTEGER,
   [conflict_of_interest_statement] TEXT,
   [has_data_links] TEXT,
   [has_prereg_links] TEXT,
   [prereg_links] TEXT,
   [prereg_link_info] TEXT,
   [last_updated] TEXT
);
CREATE INDEX idx_preprints_ui_date ON preprints_ui(date_created);
CREATE INDEX idx_preprints_ui_provider ON preprints_ui(provider);
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