Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
Symposium <Symposium of the Division of Materials Engineering and Interfacial Phenomena: Cutting-edge research of Materials Processing and Interfacial study> | |||||
(9:00–10:00) (Chair: Kobayashi Y.) | |||||
W101 | Syntheses of luminescent, mesoporous silica particles using monodisperse cores | luminescence mesoporous silica particle core-shell structure | S-14 | 220 | |
W102 | Development of single nano-sized metal particle manufacturing technology using gas-phase evaporation method. | nano particle | S-14 | 314 | |
W103 | A One-Pot Synthesis of Hollow Mesoporous Organosilica Nanoparticles | Hollow Nanoparticles Organosilica Buffer Solution | S-14 | 793 | |
(10:00–11:00) (Chair: Watanabe S.) | |||||
W104 | Control over porous silica particles incorporating Au nanoparticles for highly catalytic activities. | gold nanoparticle porous silica nanocatalyst | S-14 | 579 | |
W105 | Spontaneous formation of nanometer-thick coating of organic silica on the surface of nano-sized magnetite particles in stable dispersion in amphiphilic amine | organic silica amine hydrophobic nanoparticle | S-14 | 902 | |
W106 | Development of Au/SiO2 Composite Nanoparticles for Imaging of Medical Diagnosis | Au silica-coating nanoparticle | S-14 | 190 | |
(11:00–12:00) (Chair: Yamauchi N.) | |||||
W107 | Control over assemblies of anisotropic composite particles using nanoparticle fluid | array structure anisotropic particles nanoparticle fluid | S-14 | 123 | |
W108 | Formation of Conductive Network Structures of Gold Nanoparticles by Convective Self-Assembly with Liquid-Level Manipulation | Self Assembly Grid Pattern Transparent Conductive Film | S-14 | 556 | |
W109 | Decrease in metal-metal bonding temperature using copper oxide nanoparticles | Copper oxide low-temperature metal-metal bonding | S-14 | 185 | |
(13:00–14:00) (Chair: Nakagawa K.) | |||||
W113 | Preparation of metal oxide nanosheets from metal alkoxides by use of graphene oxide templates | Graphene Metal Oxide Nanosheets | S-14 | 324 | |
W114 | Laser synthesis of transparent conductive Carbon thin film | Laser Carbon Film | S-14 | 661 | |
W115 | Fabrication of highly refractive, thermal resistive nanocomposite films | Nanoparticle refractive index Polymer Thin Film | S-14 | 537 | |
(14:00–15:00) (Chair: Inasawa S.) | |||||
W116 | Effect of oxygen inhibition on 3D UV printing process | UV cure 3D printer simulation | S-14 | 97 | |
W117 | Electric Generation Characteristics of Dye-Sensitized Solar Cells Using Layered Titanate Nanosheets with A Lamellar Structure | dye-sensitized solar cell nanosheet layered titanate | S-14 | 353 | |
W118 | Preparation of ZnO semiconductor thin films by wet process | ZnO thin films sol-gel | S-14 | 349 | |
(15:00–16:00) (Chair: Tsuji Y.) | |||||
W119 | Unidirectional migration of two-dimensionally embedded nanoparticles in polymer nanocomposite film by thermal annealing | polymer nanocomposite Unidirectional migration thermal annealing | S-14 | 729 | |
W120 | Construction of a particle-solvent-solute coupled model for drying and concentration process of particle dispersed solution | drying simulation dispersion solute adsorption | S-14 | 101 | |
W121 | Appearance of Hyper Swollen Lamellar Phase by Addition of the Hydrophobic Organic Molecule | hyper swollen lamellar phase self-assembly carbon nanosheet | S-14 | 539 | |
(16:00–17:00) (Chair: Shinto H.) | |||||
W122 | Molecular pattering on substrate through microsphere templating and formation of ordered porous structure | microsphere templating Molecular pattering ordered porous structure | S-14 | 407 | |
W123 | Creation of Functional Materials by using Crystalline SupraMolecule Interaction of Side Chain Crystalline Bulock Copolymer | Supramolecular Interaction Side Chain Crystal Functional material | S-14 | 162 | |
W124 | The Mechanism for the Generation of Micron Fibers from a Colloidal Suspension under Reduced-Pressure Drying | self-organization drying colloidal micron fibers | S-14 | 742 |