Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
---|---|---|---|---|---|
M²ρΎμ | |||||
(9:30–10:45) (Chair: No data , No data ) | |||||
M01 | Observation of reaction in liquid-liquid system under microwave irradiation | microwave oscillatory reaction non-equilibrium reaction | 12-a | 62 | |
M02 | Surface modification of inorganic material using a silane coupling agent having an ionic liquid structure | ionic liquids surface modification silane coupling agent | 12-a | 101 | |
M03 | Solubilization of proteins in organic solvents using polymarizable surfactants | protein surfactant polymerization | 12-a | 50 | |
M04 | Self-healing corrosion protection using nanopores of anodized aluminum oxide film | self-healing corrosion anodizing | 12-a | 2 | |
M05 | Development of self-healing corrosion protective wax-coatings | wax self-healing nanofiber | 12-a | 6 | |
(10:45–12:00) (Chair: No data , No data ) | |||||
M06 | Formation of Metal Particle Networks through Convective Self-Assembly for Transparent Conductive Materials | Convective Self-Assembly Network Structures Transparent Conductive Films | 12-a | 89 | |
M07 | Mechanism for adsorption-induced structural deformation of zeolite templated carbon | Zeolite templated carbon Stress-strain curve Adsorption-induced structural deformation | 12-a | 90 | |
M08 | Control of surface charge in soap-free sysnthesis of micrometer sized polystylene colloid | soap-free synthesis polystylene colloid surface charge | 12-a | 30 | |
M09 | Flow Synthesis and Structural Control of Plasmonic Nanoshells | Core-shell particles Hollow particles Plasmonics | 12-c | 88 | |
M10 | Immobilization of a phospholipid bilayer on organic porous membranes | lipid bilayer covalent immobilization cellulose | 12-a | 58 | |
(13:00–14:15) (Chair: No data , No data ) | |||||
M11 | Preparation of Thermosetting Resin-Based Active Carbon Particles and Electric Double Layer Capacitor Properties | EDLC resin-based carbon active carbon | 12-c | 115 | |
M12 | Synthesis of metal oxide-carbon hybrid nano particles by arc discharge | arc discharge nanoparticle carbon | 12-c | 93 | |
M13 | Preparation of Pd catalysts supported in nanogel particle matrix with different cross-link density | nanogel particle cross-link density palladium | 12-c | 114 | |
M14 | Formation of niobate nanosheets with different sheet thickness by a bottom-up approach | nanosheet niobate surfactant | 12-d | 82 | |
M15 | Effect of synthesis condition on pka shift of nanoparticles including N-acryloyl L-valine monomer | nano particle pKa shift temperature-responsive | 12-d | 100 | |
(14:15–15:30) (Chair: No data , No data ) | |||||
M16 | Upconversion emission of Er3+:LaOBr nanophosphor and effects of dopants | Spray drying Core shell method upconversion | 12-d | 148 | |
M17 | Effects of matrix composition on photoluminescence of Er3+-doped ceramics phosphors | Spray drying Core shell method upconversion | 12-d | 149 | |
M18 | Study for mechanism of nano-particle formation under microwave irradiation | microwave nano-particle DLS | 12-d | 60 | |
M19 | Synthesis of functional particles using microbial reduction | microbial reduction nanoparticle catalyst | 7-a | 91 | |
M20 | Tuning of plasmonic-photonic crystal structure formed on gel-immobilized colloidal crystal | colloidal crystal plasmonics gel | 12-f | 28 |