Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Hall V, Day 1 | |||||
(9:40–11:00) (Chair: Matsuzaki Y.) | |||||
V103 | Citation Network Analysis of Literature of Fuel Cell, Battery and Related Technologies | Citation Network Analysis Fuel Cell Battery | S-9 | 214 | |
V104 | Effect of particle size of La0.85Sr0.15Cr1-XNiXO3-CeO2 anode for SOFC | Solid oxide fuel cell Anode Perovskite | S-9 | 998 | |
V105 | Improvement of thermal durability and power density of SOFCs by preparing nano particles fabricated by pulsed laser deposition methods. | SOFC PLD LSC | S-9 | 876 | |
V106 | Conductive Characteristics and Power Generation of Electrolyte Material Pr2-xBa1+xSc2O7 with Ruddlesden-Popper Structure for Solid Oxide Full Cells | Full cell ionic conductivity electrolyte | S-9 | 222 | |
(11:00–12:00) (Chair: Tsukui S.) | |||||
V107 | Power generation characteristics¡¡of a small DCFC | DCFC direct carbon fuel cell carbonate | S-9 | 624 | |
V108 | Evaluation of dependency of fuel supply frequency and temperature characteristic in Pulse Jet-Rechargeable Direct Carbon Fuel Cell | SOFC direct carbon isooctane | S-9 | 640 | |
V109 | Relationship between electrode degradation by sulfur compounds and the fuel supply interval time in Pulse Jet - Rechargeable Direct Carbon Fuel Cell | fuel cell SOFC isooctane | S-9 | 641 | |
(13:00–14:20) (Chair: Kikuchi R.) | |||||
V113 | The influence of mass transfer in fuel column and reactivity to power generation characteristic of Rechargeable solid carbon fuel cell (RSCFC) | SOFC DCFC CB | S-9 | 631 | |
V114 | Evaluation of system configurations for light integration of gasification and fuel cell | solid oxide fuel cell coal gasification Aspen plus | S-9 | 566 | |
V115 | Process simulation of multistage fuel supply module applied SOFC for improving system efficiency | SOFC Process Analysis Multistage fuel supply | S-9 | 891 | |
V116 | Chemical reaction coupled with surface diffusion near triple phase boundaries of solid oxide fuel cell | solid oxide fuel cell microkinetic model triple phase boundary | S-9 | 652 | |
(14:20–15:20) (Chair: Fukunaga H.) | |||||
V117 | High speed deposition of YSZ electrolyte thin film by pulsed laser deposition method | SOFC YSZ electrolyte PLD | S-9 | 780 | |
V118 | Geometrically and chemically microstructural control and power generation characteristics in semiconductor-sensitized solar cell (TiO2/Sb2S3/CuSCN) | solar cell SSSCs microstructure | S-9 | 629 | |
V119 | Influence of Localized Surface Plasmons on the Light Absorbance of the Photo-Active Layer of Organic Solar Cells and the Cell Performance | organic solar cells nanoparticles localized surface plasmon | S-9 | 974 | |
(15:20–16:20) (Chair: Sugiyama M.) | |||||
V120 | [Invited Lecture]Printable solar cells for next generation -Perovskite solar cells with controlled passivation interfaces for enhancing efficiency | tentative tentative tentative | S-9 | 1013 | |
(16:20–17:00) (Chair: Ohtomo J.) | |||||
V123 | Nanoparticles Seeded Single-Crystal Si nanowires Growth with Diameter Control Mechanism | silicon nanowires growth | S-9 | 722 | |
V124 | Optical Properties of Porous Si / Metal Nanoparticle Composites and their Performance as Solar Cells | Porous Si Metal nanoparticle Solar cell | S-9 | 909 | |
Hall V, Day 2 | |||||
(9:00–10:00) (Chair: Inasawa S.) | |||||
V201 | Efficient Preparation of Carbon Nanoparticles Using the Liquid Pulse Injection Technique | Lithium-ion Battery Production Process Nano Material | S-9 | 181 | |
V202 | Synthesis of porous LaMnO3 and its electrode catalysis performance | Lithium-oxygen battery Spray pyrolysis catalysis | S-9 | 535 | |
V203 | Thermal Behavior of 18650 Lithium-ion Batteries During Discharge Cycles | 18650 Lithium-ion battery Thermal management | S-9 | 287 | |
(10:00–11:00) (Chair: Essaki K.) | |||||
V204 | Influence of Impurities of Carbon Black Conductors on Electrode Performance of Li-ion Batteries | Carbon Black Lithium-ion battery | S-9 | 654 | |
V205 | Relationship between the structure of contact interface and electron conductivity in electrode layer | Lithuim-ion battery carbon conductive material mass transport | S-9 | 933 | |
V206 | The Effect of Mixing and Kneading Process to the Silicon Particle Anode Performance for Li-ion Batteries | Li-ion battery silicon anode kneading and mixing | S-9 | 963 | |
(11:00–12:00) (Chair: Tsukui S.) | |||||
V207 | [Invited Lecture]********** | tentative tentative tentative | S-9 | 1012 | |
(13:00–14:20) (Chair: Tamaki T.) | |||||
V213 | Performance analysis of the solid oxide electrolysis system for hydrogen production | hydrogen production solid oxide electrolysis cell Aspen Plus | S-9 | 562 | |
V214 | Interfacial conduction mechanism of cesium phosphate and silicon pyrophosphate composite electrolytes for intermediate-temperature fuel cells | Intermediate-temperature fuel cell SiP2O7 conduction mechanism | S-9 | 953 | |
V215 | Theoretical Approach for Hydrogen Absorbing Properties in Pd-based Alloy | Pd-based alloy hydrogen storage density functional theory | S-9 | 577 | |
V216 | Low-tempreture preparation of high efficiency Bi2Te3 thermoelectric thin film and enlargement of deposition area | Bi2Te3 thin film thermoelectric material | S-9 | 803 | |
Hall V, Day 3 | |||||
(9:40–11:00) (Chair: Nishimura A.) | |||||
V303 | Long term operation of a direct methanol fuel cell stack using neat methanol | direct methanol fuel cell stack power degradation air humidity | S-9 | 210 | |
V304 | Development of the stable and active Pd catalyst supported by particle-embedded carbon nanofiber for direct formic acid fuel cell | direct formic acid fuel cell anode catalyst particle embedded carbon nanofiber | S-9 | 714 | |
V305 | Direct formic acid fuel cell using Pd nanoparticles catalyst supported on TiO2 embedded carbon nanofiber | Direct formic acid fuell cell Carbon nanofiber Electrocatalyst | S-9 | 196 | |
V306 | Extremely low-platinum alloy nanoparticle catalyst for Solid-state alkaline fuel cell (SAFC) | Alkaline Fuel Cell Extremely Low Platinum Catalyst Oxygen Reduction Reaction | S-9 | 364 | |
(11:00–12:00) (Chair: Koyama M.) | |||||
V307 | [Invited Talk] Low Platinum Cathode for Intermediate Temperature Fuel Cell without External Humidification | Polymer Electrolyte Fuel Cell Low Platinum Cathode No Humidification | S-9 | 60 | |
(13:00–14:00) (Chair: Tsujiguchi T.) | |||||
V313 | Development of new nanofiber material for cathode electrode in PEFCs | PEFC Nanofiber Electrocatalyst | S-9 | 521 | |
V314 | Clarification on Coupling Transport Phenomena in Single Cell of PEFC with Separator Temperature Data Obtained by Thermograph | PEFC Coupling Transport Phenomena Thermograph | S-9 | 105 | |
V315 | Kinetic analysis on a direct ethanol fuel cell by using composite fiber catalysts | Direct ethanol fuel cell Kinetic analysis Composite fiber catalyst | S-9 | 360 | |
(14:00–15:20) (Chair: Inoue G.) | |||||
V316 | Evaluation of microstructure and proton conductivity in titanium phosphate glass-ceramics (Graduate School of Frontier Sciences) Kadota Minoru, | glass-ceramics proton conducting fuel cell sol-gel method | S-9 | 160 | |
V317 | Structure and Properties of Polymer Electrolyte Membrane with Heterocyclic Ring Systems for PEFCs | Proton Exchange Membrane Multiblock Copolymer Heterocyclic Ring Systems | S-9 | 454 | |
V318 | Observation of local ion conduction in inorganic ion conductors (Graduate School of Frontier Sciences, U. Tokyo) Iwanaga Aki, | proton conductor scanning probe microscope grain boundary | S-9 | 832 | |
V319 | Development of New Anion Exchange Membranes using Polymer of Intrinsic Microporosity | Solid state alkaline fuel cell (SAFC) Anion exchange membrane (AEM) Polymer of Intrinsic Microporosity (PIM) | S-9 | 559 | |
(15:20–16:20) (Chair: Ohashi H.) | |||||
V320 | Effect of the electrode structure of the DFAFC on the concentration overvoltage profiles. | direct formic acid fuel cell electrode structure overvoltage | S-9 | 716 | |
V321 | Improvement in the durability of Pt commercial cathode catalysts available by coverage with silica layers | Pt catalyst fuel cell silica coating | S-9 | 328 | |
V322 | Influence of relative humidity on oxygen reduction reaction kinetics in cathode layer in PEFC | PEFC oxygen reduction reaction kinetics relative humidity | S-9 | 814 |