Last modified: 2018-09-04 10:00:00
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall EG, Day 1 | |||||
ST-26 [Trans-Division Symposium] Novel Development in Batteries, Fuel Cells, Solar Cells and Other Energy Conversion/ Storage Technologies -From Nano Design to System Design- (Oral session) | |||||
(10:00–11:00) (Chair: | |||||
EG104 | Research for Steam and Carbon Dioxide Electrolysis using Solid Oxide Cells for Methane Synthesis and Prospect | high temperature electrolysis methane synthesis SOEC | ST-26 | 605 | |
EG105 | Influence of transport properties in solid oxide fuel cells with proton-conducting lanthanum tungstate | lanthanum tungsten oxide proton conductor SOFC | ST-26 | 750 | |
EG106 | Installation of carbon nanotube synthesis into solid oxide fuel cell | solid oxide fuel cell carbon nanotube direct growth | ST-26 | 736 | |
(11:00–12:00) (Chair: | |||||
EG107 | [Invited lecture] Development of Energy Systems using Hydrogen from Renewable Energy | Renewable Energy Hydrogen Energy System High Temperature Electrolysis | ST-26 | 704 | |
(13:00–14:00) (Chair: | |||||
EG113 | Strategy for Suppressing Water Uptake in High IEC Anion Exchange Membranes with Thermally Convertible Polymer System | Water uptake Solid alkaline fuel cells Aromatic backbone | ST-26 | 931 | |
EG114 | Engineering Palladium Nanocatalysts as High Efficient Anode Catalysts for Alkaline Direct Alcohol Fuel Cells (DAFCs) | Alkaline Fuel Cell Anode Catalyst Ethanol Oxidation Reaction | ST-26 | 512 | |
EG115 | Design and synthesis of highly durable aromatic anion exchange membrane for solid-state alkaline fuel cell application | Anion exchange membrane Fuel cell Molecular design | ST-26 | 799 | |
(14:00–14:40) (Chair: | |||||
EG116 | Analysis and current-voltage characteristic for air-oxidized electrode material of a redox flow battery | Vanadium redox flow battery Air oxidation Reaction resistance | ST-26 | 69 | |
EG117 | Electrode designing for direct formic acid fuel cell using fibrous catalyst | Direct formic acid fuel cell Mass transport Catalyst layer | ST-26 | 221 | |
Hall EG, Day 2 | |||||
(9:00–10:20) (Chair: | |||||
EG201 | Proposition of carbon-air secondary battery system for large-scale energy storage | Secondary battery Solid oxide fuel cell Electrolysis | ST-26 | 277 | |
EG202 | SiO2/C composite fibers with high SiO2 content as anode material for Li-ion battery prepared by electrospinning with heat treatment | Electrospinning Anode Lithium ion battery | ST-26 | 768 | |
EG203 | Preparation and Electrochemical Properties of the Positive Electrode Materials for Li-ion Batteries by the Classification Process | powder classification co-precipitation positive electrode materials | ST-26 | 92 | |
EG204 | Effect of infusibilization of polyacrylonitrile fiber on capacitor performance | electric double layer capacitor polyacrylonitrile fiber stabilization under air | ST-26 | 471 | |
(10:40–11:40) (Chair: | |||||
EG206 | [Invited lecture] Importance of interfaces in solid-state batteries | Solid-state battery Interface Nanoionics | ST-26 | 223 | |
General discussion | |||||
(13:00–14:00) (Chair: | |||||
EG213 | Change in internal resistance of lithium ion batteries analyzed by discharging EIS and numerical calculation | Reaction Resistance Electric Double Layer Solid Electrolyte Interface(SEI) | ST-26 | 509 | |
EG214 | Synthesis of high voltage olivine cathode materials for lithium ion batteries by spray pyrolysis and their cell performance | Cathode Lithium ion batteries Spray pyrolysis | ST-26 | 595 | |
EG215 | Numerical analysis of discharge characteristics of a LiFePO4/Graphite Lithium-ion Battery | LiFePO4/Graphite lithium-ion battery Electrode reaction and battery discharge characteristics Numerical simulation | ST-26 | 210 | |
Hall EG, Day 3 | |||||
(9:00–10:00) (Chair: | |||||
EG301 | Correlation between TiO2 roughness and perovskite grain size effect on solar cell performance | Perovskite Solar cell grain size | ST-26 | 235 | |
EG302 | Investigation of 2-dimentional crystal growth and analysis of perovskite light absorbing layer cell for tandem solar cell | Perovskite Solar Cell Crystallization | ST-26 | 470 | |
EG303 | Performance of dye-sensitized solar cells with reversible gel electrolyte solutions | Dye-sensitized solar cell reversible gel electrolyte | ST-26 | 899 | |
(10:20–11:00) (Chair: | |||||
EG305 | Evaluation of Cathode Catalytic Activity for Efficient Polymer Electrolyte Fuel Cell | PEFC Platinum Catalytic activity | ST-26 | 547 | |
EG306 | Effect of water permeation through PEM on oxygen transport in the cathode catalyst layer of polymer electrolyte fuel cell | polymer electrolyte fuel cell water permeation oxygen transport | ST-26 | 548 | |
(11:00–12:00) (Chair: | |||||
EG307 | [Invited lecture] Recent progress on analysis methods for PEFCs: Correlations between structures and properties in a catalyst layer | Polymer electrolyte fuel cells Synchrotron radiation x-rays Electron microscopy | ST-26 | 222 | |
(13:00–14:20) (Chair: | |||||
EG313 | Connected Platinum-Iron Nanoparticle Catalyst with Enhanced Chemical Ordering for Polymer Electrolyte Fuel Cells | Oxygen reduction reaction Superlattice Durability | ST-26 | 854 | |
EG314 | Analysis of structure and transport of porous material for PEFC (2) Analysis of liquid water network formed by liquid water injection into gas diffusion layer for PEFC using X-ray computed tomography | PEFC Porous material X-ray CT | ST-26 | 507 | |
EG315 | Analysis of structure and transport of porous material for PEFC (3) Visualization of liquid water transport by pressure-induced injection into gas diffusion layer for PEFC using X-ray high-speed computed tomography | PEFC Porous material X-ray CT | ST-26 | 515 | |
EG316 | Measurement method of intrinsic reaction rate constant of oxygen reduction reaction by using Pt-sputtered electrode in PEFC | Polymer electrolyte fuel cell oxygen reduction reaction Pt-sputtered electrode | ST-26 | 755 |
Technical program
Technical sessions (Wide)
(For narrow screen)
Session programs
Search in technical program
SCEJ 50th Autumn Meeting (Kagoshima, 2018)