
Last modified: 2025-09-29 10:33:36
| Session sponsor: | Toyota Central R&D Labs., Inc. |
We have been organizing cross-division symposia for over a decade, focusing on energy storage and conversion devices primarily based on electrochemical reactions. Throughout this period, numerous presentations and discussions have been held on key topics such as local production and consumption of energy, integration with renewable energy, comprehensive science from materials to systems, process development, the integration of measurement and simulation, and the use of data-driven approaches. In this symposium, in addition to general presentations, we aim to share and discuss the current background, technologies, challenges, and future perspectives related to these ongoing efforts.
| Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
|---|---|---|---|---|---|
| Hall EG, Day 1 | |||||
| (9:00–10:00) (Chair: | |||||
| EG101 | Application of Methanol Aqueous Solution as a Hydrogen Carrier Using a Tubular Reactor | Methanol solution Hydrogen | ST-23 | 878 | |
| EG102 | Propane synthesis via CO2 hydrogenation using a bifunctional catalyst | Heterogeneous catalysis CO2 | ST-23 | 134 | |
| EG103 | Morphology Control of ZIF-8-Based Materials and their Application as Precursors for Electrocatalysts | Fe-N-C Microwave heating Oxygen Reduction Reaction | ST-23 | 411 | |
| (10:00–11:00) (Chair: | |||||
| EG104 | Development of electrocatalysts utilizing unexplored Metal-Organic Frameworks (MOFs) | fuel cell metal-organic frameworks oxygen reduction reaction | ST-23 | 304 | |
| EG105 | Evaluation of surface adsorption reaction species coverage on SrZr0.95Y0.05O3-δ-added Ni/YSZ fuel electrodes in hydrogen power generation | Solid oxide fuel cell proton conductor fuel electrode | ST-23 | 593 | |
| EG106 | Structural Control of Connected Pt-Based Nanoparticle Catalysts for Improve Oxygen Reduction Reaction Activity | Oxygen Reduction Reaction Electrocatalyst Fuel Cell | ST-23 | 875 | |
| (11:00–12:00) (Chair: | |||||
| EG107 | [Invited lecture] Optimization of Catalyst Ink Structure and Its Impact on Fuel Cell Performance | Fuel cell catalyst ink process-driven optimization | ST-23 | 972 | |
| (13:00–14:00) (Chair: | |||||
| EG113 | Effect of structure on power generation characteristics of Pt black electrodes for PEFC | PEFC Cathode Ionomer free | ST-23 | 959 | |
| EG114 | Prediction of cell characteristics in polymer electrolyte fuel cell using persistent homology and machine learning | Polymer electrolyte fuel cell Persistent homology Machine learning | ST-23 | 657 | |
| EG115 | Influence of catalyst ink dispersion processes for PEFC on the ink properties | Catalyst ink PEFC Dispersion | ST-23 | 882 | |
| (14:00–15:20) (Chair: | |||||
| EG116 | Process analysis of polymer electrolyte fuel cells(1) Observation of drying catalyst inks using small-angle X-ray scattering | Polymer electrolyte fuel cell Catalyst ink Small-angle X-ray scattering | ST-23 | 409 | |
| EG117 | Operando analysis of water transport in polymer electrolyte fuel cells(8) Observation of condensasion/evaporation in mesopores of catalyst layers using small-angle neutron scattering | Polymer electrolyte fuel cell catalyst layer Small-angle neutron scattering | ST-23 | 417 | |
| Break | |||||
| EG119 | Operando analysis of water transport in polymer electrolyte fuel cells(9) Water accumulation in the gas diffusion layer and flow channels under low-temperature operating conditions | Polymer electrolyte fuel cell Gas diffusion layer Porous material | ST-23 | 515 | |
| (15:20–16:40) (Chair: | |||||
| EG120 | Operando analysis of water transport in polymer electrolyte fuel cells(10) Gas purge for water evaporation in a gas diffusion layer | Polymer electrolyte fuel cell Gas diffusion layer Purge | ST-23 | 49 | |
| EG121 | Separate evaluation of temperature and humidity dependencies of PEFC performance | polymer electrolyte fuel cell temperature relative humidity | ST-23 | 780 | |
| EG122 | Development of an automatic determination method of MEA parameters using experimental results obtained from a test-piece cell | Fuel Cell Optimization Membrane Electrode Assembly | ST-23 | 543 | |
| EG123 | Catalyst Degradation Suppression and Fuel Economy Improvement in a Fuel Cell System Using Model Predictive Control | Fuel Cell Systems Model Predictive Control | ST-23 | 475 | |
| (16:40–17:00) (Chair: | |||||
| EG124 | [Panel Discussion] University-Industry Collaboration and Its Challenges in Energy Storage and Conversion Process Research | Panel Discussion University-Industry Collaboration Energy Storage and Conversion | ST-23 | 912 | |
| Hall EG, Day 2 | |||||
| (9:00–10:00) (Chair: | |||||
| EG201 | [No show] Facile synthesis of Cu/Fe@Zinc cobaltite electrochemical materials for energy storage applications | Supercapacitors energy storage zinc cobaltite | ST-23 | 941 | |
| EG202 | Sensitivity Analysis of Integration Costs through coupling the Building Façade Photovoltaic Potential with a Techno-Economic Model | Wall-mounted Solar cells Energy system optimization carbon neutrality | ST-23 | 295 | |
| EG203 | Numerical analysis of particle breakage behavior during compression process of all-solid-state battery materials | All-Solid-state battery Powder compaction Discrete element method | ST-23 | 215 | |
| (10:00–11:00) (Chair: | |||||
| EG204 | Quantitative Evaluation of Interparticle Contact Considering Particle Shape of All-Solid-State Battery by Numerical Simulation | Discrete Element Method All solid state batteries Irregular particle | ST-23 | 644 | |
| EG205 | Structural Simulation in All-Solid-State Batteries with Effect of Volume Expansion | All-Solid-State Battery Modeling volume expansion | ST-23 | 909 | |
| EG206 | Pore structure and EDLC properties depending on activation conditions of thermosetting resin | EDLC activated carbon supercapacitor | ST-23 | 907 | |
| (11:00–12:00) (Chair: | |||||
| EG207 | [Invited lecture] Carbon neutrality goal and its energy system implications | Energy system modeling Climate change mitigation Integrated Assessment | ST-23 | 975 | |
| Hall EG, Day 3 | |||||
| (9:00–9:40) (Chair: | |||||
| EG301 | Effect of Organic Ligands in Iron-Based Metal-Organic Frameworks on Anodic Reaction of Water Electrolysis | water electrolysis electrocatalyst metal-organic frameworks | ST-23 | 51 | |
| EG302 | Numerical analysis of effect of Porous Transport Layer on Gas-Liquid transport of Proton Exchange Membrane Water Electrolyzer | Proton Exchange Membrane Water Electrolyzer Two-phase flow Pore network modeling | ST-23 | 650 | |
| (9:40–10:40) (Chair: | |||||
| EG303 | Synergistic LiNO3/FEC Modification in LiOTf-TMP Electrolyte for Durable Non-Flammable Lithium-Metal Batteries | Non-Flammable Electrolyte Lithium-Metal Batteries | ST-23 | 445 | |
| EG304 | Ammonia Synthesis from Water and Nitrogen Using an Electrochemical Cell Integrated with Ammonia Liquefaction Separation | ammonia synthesis molten solt electrolytes green ammonia | ST-23 | 574 | |
| EG305 | Modeling of Protonic Ceramic Electrochemical Reactors for Ammonia Cracking | Hydrogen energy carrier proton conductor ammonia decomposition rection | ST-23 | 856 | |
| (10:40–11:40) (Chair: | |||||
| EG306 | [Invited lecture] Electrochemical Application of Boron-doped Diamond Electrodes | Boron-doped Diamond Electrodes CO2 electrolysis Sensor | ST-23 | 904 | |
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SCEJ 56th Autumn Meeting (Tokyo, 2025)
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