Last modified: 2020-03-02 11:00:00
Title (J) field includes “酸化物”; 12 programs are found.
The search results are sorted by the start time.
Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
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Day 1 | PA147 | Study on growth of carbon nanotubes on oxide ion conductor | Carbon Nanotube Solid Oxide Fuel Cell | 9-e | 353 |
Day 1 | PA149 | Evaluation of electrochemical properties of hetero interface between mixed oxide ionic - electronic conductors | Hetero interface Scanning probe microscopy Solid Oxide Fuel Cell | 9-e | 488 |
Day 1 | PA155 | Design and evaluation of hydrogen energy storage system using metal oxides | Hydrogen storage Metal oxides Steam electrolysis | 9-e | 692 |
Day 1 | PA160 | Microstructure and catalytic mechanism of metal oxides for hydrogen absorption properties of magnesium | Magnesium hydride Hydrogen storage Catalytic mechanism | 9-e | 418 |
Day 1 | PA167 | Oxidative Coupling of Methane in Solid Oxide Electrolysis Cells | Oxidative methane coupling Ethane Ethylene | 9-e | 526 |
Day 2 | PC242 | Development of Composite Electrocatalysts Supported on Metal Oxide for Oxygen Evolution Reaction | Water splitting OER electrocatalyst Carbon free | 12-c | 612 |
Day 3 | K301 | Facet-controlled metal oxide nanoparticles formed by hydrothermal organic modification and its low-temperature oxygen storage capacity | Facet control Hydrothermal Oxygen storage capacity | 12-d | 676 |
Day 3 | PD339 | Theoretical exploration of binary oxide catalysts for lithium-air battery cathodes | binary oxide catalysts lithium-air battery density functional theory | 5-a | 444 |
Day 3 | PD341 | Structural insights into the performance of MoO3-WO3 a mixed oxide supported on ZrO2 for butanolysis of furfuryl alcohol | MoO3-WO3-ZrO2 EISA method Butyl levulinate | 5-a | 695 |
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 | L315 | Effect of Ion Conductive Oxide for Direct Carbon Nanotube Growth in the Solid Oxide Fuel Cell | Solid oxide fuel cell Carbon nanotube oxide ion conductor | 9-e | 542 |
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SCEJ 85th Annual Meeting (2020)