Last modified: 2020-03-02 11:00:00
Title (J) field includes “電解”; 16 programs are found.
The search results are sorted by the start time.
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Day 1 | K113 | Downsizing of sulfide solid-electrolyte particles by liquid shaking method | All-solid-state lithium battery Liquid Shaking method Li3PS4 | 12-c | 256 |
Day 1 | PA159 | Investigation of electrode materials in ammonia electrosynthesis with electrochemical promotion of catalysis effect | Ammonia electrosynthesis catalyst proton conductor | 9-e | 724 |
Day 1 | PA166 | Development of three-dimensional electrode based on carbon nanotube film for efficient alkaline water electrolysis | Carbon nanotube Hydrogen production alkaline water electrolysis | 9-e | 339 |
Day 1 | PA167 | Oxidative Coupling of Methane in Solid Oxide Electrolysis Cells | Oxidative methane coupling Ethane Ethylene | 9-e | 526 |
Day 1 | L123 | Development of connected Ir-Ru nanoparticle catalysts for polymer electrolyte water electrolysis | Polymer electrolyte water electrolysis Connected nanoparticle catalysts Carbon free catalysts | 12-d | 587 |
Day 2 | K206 | Magnesium ion conduction promotion in mesoporous silica based solid nanocomposite electrolyte | mesoporous battery | 12-a | 96 |
Day 2 | D222 | Basic Study of CO2 Electrolysis in Ionic Liquid | CO2 removal CO2 Electrolysis Ion Liquid | 13-g | 674 |
Day 3 | L302 | Boosted Oxygen Evolution Performance of an Iron-based Electrocatalyst in Alkaline Water Splitting | oxygen evolution reaction iron-based electrocatalyst alkaline water splitting | 9-e | 632 |
Day 3 | PD332 | Theoretical analysis of ammonia electrosynthesis on barium cerate supported ruthenium catalysts | Ammonia synthesis Electrochemical promotion of catalysis First principle calculation | 5-a | 725 |
Day 3 | PD347 | Observation of N2 adsorption in ammonia electrosynthesis using in situ FTIR spectroscopy | Ammonia electrolysis Protonic ceramic fuel cell Adsorbed N2 | 5-a | 696 |
Day 3 | PD358 | Evaluation of cell performance in the electrolysis of water with hydrogen-permeable palladium membrane | Hydrogen Production Palladium membrane Electrolysis of water | 5-d | 274 |
Day 3 | L309 | Chemical durability of MEA using thin pore-filling electrolyte membrane with high-density structure of sulfonic acid groups | polymer electrolyte fuel cells pore-filling membrane chemical durability | 9-e | 643 |
Day 3 | L313 | Investigation of high-efficiency solid oxide fuel cells with bilayer electrolyte | Solid oxide fuel cell Bilayer electrolyte Transport property | 9-e | 659 |
Day 3 | L314 | Proposal of the model of comprehensive anode reaction in solid oxide fuel cell / electrolysis cell and constructing the method of multivariable fitting | Solid Oxide Fuel Cell Kinetics modeling Langmuir-Hinshelwood | 9-e | 698 |
Day 3 | PE311 | Preparation of Pd thin membrane by vacuum-assisted electroless plating on porous stainless tube with titania powders | Pd thin membrane Vacuum-assisted electroless plating Titania powders | 4-a | 57 |
Day 3 | L316 | Development of Intermediate-Temperature Electrolysis Cells Using Solid Phosphate Electrolytes | electrolysis intermediate temperature solid phosphate | 9-e | 437 |
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SCEJ 85th Annual Meeting (2020)