Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Electronics, Materials engineering & interfacial phenomena | |||||
(9:30–10:45) (Chair: No data , No data ) | |||||
P03 | Construction of biologic gates with widely used enzymes | biologic gate bioelectrocatalysis enzyme electrode | 11-a | 94 | |
P04 | Elucidation of transport resistance factors on polymer electrolyte fuel cell with silica coating platinum catalyst supported by carbon | PEFC Porous media Oxygen diffusion | 11-a | 151 | |
P05 | Mechanochemical synthesis of porous coordination polymer composed of multiple metals | porous coordination polymers zeolitic imidazolate frameworks mechanochemical | 12-k | 144 | |
P06 | Development of polymer gel electrolytes based on phosphonium ionic liquids | Ionic liquid Phosphonium cation Polymer electrolyte | 11-a | 23 | |
P07 | Electropolymerization of aromatic diamines and the dependence of monomer structures on formation of conductive polymers | Aromatic diamine Electropolymerization Conducting polymer | 11-a | 24 | |
(11:00–12:15) (Chair: No data , No data ) | |||||
P09 | Physicochemical properties of tetracyanoborate-based phosphonium ionic liquids as electrolytes for dye-sensitized solar cells | Ionic liquid Phosphonium cation Dye-sensitized solar cell | 11-a | 22 | |
P10 | Making of Dye Sensitized Solar Cell using the conductive film | Dye Sensitized Solar Cell conductive film SK-1 | 11-a | 1 | |
P11 | Improvement of aluminum air batteries using a conducting polymer electrode and a waste solution of pickled plum production as an electrolyte | Air battery Conducting polymer Ume plum | 11-a | 4 | |
P12 | Lake-Shinji Sluge cell | Lake-Shinji Sluge voltage of 0, 59 voltage recovers | 11-a | 2 | |
P13 | Charge for Daniell cell | Daniell cell Charge | 11-a | 173 | |
(13:15–14:30) (Chair: No data , No data ) | |||||
P18 | Preparation of Sn-Cu-S thin film by electrodeposition | electrodeposition thin film tin sulfide | 11-a | 165 | |
P19 | METHOD OF PRODUCING ZINC OXIDE FILM BY USING ELECTRODEPOSITION PROCESS | ELECTRODEPOSITION ZINC OXIDE | 11-a | 75 | |
P20 | Electroless nickel-phosphorus plating under high pressure | High pressure Electroless plating Transient change | 12-g | 7 | |
P21 | shape discrimination of particle by coulter principle | coulter principle shape discrimination distribution of particle size | 12-d | 6 | |
P22 | Relationship between slug and light -Dose slug move as someone images?- | Slug Light | 11-f | 172 | |
(14:45–16:00) (Chair: No data , No data ) | |||||
P24 | Ag-Sn alloy anodes made by electrodeposition for Natrium-ion battery | Na-ion battery Ag-Sn alloy anode electrodeposition | 11-a | 131 | |
P25 | Study of electrode design of lithium ion batteries by numerical simulation | lithium ion battery porous electrode structure design | 11-a | 148 | |
P26 | Microscale experiments of lead storage battery | microscale experiments lead storage battery | 14-c | 152 | |
P27 | Improvement in Dielectric Properties of Alumina Containing a Small Quantity of Cu-Nb-O Additive by Addition of Titanium Dioxide | Low-Temperature-Sintered-Alumina Additive Composition Dielectric Property | 11-b | 89 | |
P28 | Low Temperature Sintering and Dielectric Properties of Alumina Containing a Small Quantity of Cu-Ti-Nb-O Additive in Nitrogen Atmosphere | Low-Temperature-Sintered-Alumina Nitrogen Atmosphere Dielectric Property | 11-b | 90 |