Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Energy engineering | |||||
(9:32–10:32) (Chair: Guan Guoqing, Nakagawa Nobuyoshi) | |||||
K02 | Ab-initio based estimation of byproducts adsoption behavior on activated carbon for MCH dehydrogenation process | Active carbon DFT calculation Methylcyclohexane | 9-e | 407 | |
K03 | Construction of a Power Network System for Storage Batteries Using Arduino uno | Charging System Storage Battery Arduino uno | 9-e | 88 | |
K04 | Estimation of Green Ammonia Production Capacity in Japan via Dynamic Process Simulator | Dynamic simulation Green ammonia Meteorological data | 9-e | 408 | |
K05 | What you can learn by continuing to face the sun. | equatorial mount temperature difference solar heat | 9-a | 300 | |
K06 | Dye-Sensitized Solar Cell Using Familiar Objects | Dye-Sensitized Solar Cell tooth paste paints | 9-a | 167 | |
Break | |||||
Electronics | |||||
(10:50–12:02) (Chair: Ohashi Hidenori, Tojo Tomohiro) | |||||
K09 | Evaluation of effect of dynamic structure change on reaction distribution in all-solid-state battery | all-solid-state battery DEM crack formation | 11-a | 388 | |
K10 | Effect of hydrogen production and preparation of manganese oxide thin films with interlayer Ru(bpy)3 complexes | Layered MnO2 Ru complex Hydrogen evolution | 11-f | 165 | |
K11 | Capacitor electrode application of layered manganese oxide with fluorescent properties | capacitor fluorescent dye Layered MnO$2$ | 11-c | 120 | |
K12 | Comparison of electrochemical properties of Metal complexes/MnO2 films covered with different chain lengths of lipids | Lipid Metal complex Layered MnO$2$ | 11-c | 114 | |
K13 | Refresh effect and Faraday efficiency on ammonia water electrolysis | Ammonia Erectrolysis Faraday efficiency | 11-a | 89 | |
K14 | Additive effect of Nb2O5 to electrode material MgH2 for all-solid-state lithium-ion battery | lithium ion battery magnesium hydride niobium oxide | 11-a | 95 | |
Lunch break | |||||
Electronics | |||||
(13:00–14:12) (Chair: Ichikawa Takayuki, Makuta Toshinori) | |||||
K20 | Fundamental Study on Divalent Ion Insertion and Extraction Performance in Potassium-Titanium-Niobium Oxides | Potassium-Titanium-Niobium Oxides Divalent Ion Insertion and Extraction Performance | 11-a | 41 | |
K21 | The cause that copper nitrate solution turn green | copper ion nitrate ion nitrite ion | 11-a | 317 | |
K22 | Fading of Color Anodized Aluminum | Anodized aluminum Fade Absorbance | 11-a | 252 | |
K23 | Fundamental Study on Formation of Metal Oxide Films and their””Photocatalytic Reactivity. | Metal Oxide Films Photocatalytic Reactivity P-type Semiconductor | 11-a | 86 | |
K24 | Efficient clectroplating | elrectroplating copper magnetism | 11-a | 275 | |
K25 | Elucidation of iron elution mechanism affected by sodium glutamate -Development of technology for activating seaweed beds- | kelp slag blue carbon | 11-f | 308 | |
Break | |||||
Electronics | |||||
(14:20–15:32) (Chair: Ichikawa Takayuki, Makuta Toshinori) | |||||
K27 | Correlation between the Reduction Potential and Stability,and the Amount of Copper Dendrites | Copper Dendrite Chelate Complex Reduction Voltage | 11-a | 199 | |
K28 | Development of aluminum-air secondary battery by using novel deep eutectic solvents containing OH- ion | Al-air secondary battery Deep eutectic solvents | 11-a | 406 | |
K29 | Development and Commercialization of gel-air Mg battery | battery gel emergency | 11-a | 327 | |
K30 | Evaluation of Charge-Discharge Characteristics of Ternary Cathode Materials by Controlling Manganese Valence | Layered MnO2 charge/discharge manganese valence | 11-a | 115 | |
K31 | Electrochemical Characterization of Divalent Ion Batteries Using Potassium Titanium Aluminum Oxides | Divalent Ion Battery Potassium Titanium Aluminum Oxide Cyclic Voltammetry | 11-a | 149 | |
K32 | Output Characteristics Using Potassium Birnessite MnO2 as a Cathode Material for Divalent Ion Battery cathode | Potassium Birnessite MnO2 Divalent Ion Batteries Output Characteristics | 11-a | 143 |