This symposium is organized by Sogang G-LAMP as a satellite session of ICAMD 2025, bringing together international experts in nanomaterials research to discuss topics including nanomaterials synthesis, characterization, theory, computations, and applications.
ICAMD 2025 Satellite Sessions: Link
| Time | Speaker | Title |
|---|---|---|
| Session 1 | Room 107 | Chair: Young Woo Choi (Sogang University) | ||
| 16:00-16:10 | Hyeonsik Cheong (Sogang University) |
Symposium Opening Address |
| 16:10-16:45 | Young Woo Choi, Junwoo Park (Sogang University) |
Introduction to Sogang G-LAMP institute |
| Time | Speaker | Title |
|---|---|---|
| Session 2 | Room 107 | Chair: Young Woo Choi (Sogang University) | ||
| 10:15-10:45 | Diana Y. Qiu (Yale) |
Many-body Effects on Exciton Dynamics and Nonlinear Optics in Low-Dimensional Materials |
| 10:45-11:15 | Mei-Yin Chou (Academia Sinica) |
Advanced properties of thin-film semiconductor Bi2O2Se: electron mobility, native oxide interface, and doping via molecular adsorption |
| 11:15-11:45 | Felipe H. da Jornada (Stanford) |
Novel Excitonic States by Coupling Many-body Interactions and Spatial Confinement in Materials |
| Session 3 | Room 107 | Chair: Jihyun Jang (Sogang University) | ||
| 13:15-13:45 | Cong Su (Yale University) |
Studying optical properties of hexagonal boron nitride using electron beams |
| 13:45-14:15 | Samuel Root (Case Western Reserve University) |
Autonomous alignment and healing in multilayers of immiscible dynamic polymers for damage-perceptive soft electronics |
| 14:15-14:45 | Maral Mousavi (University of Southern California) |
Integrated Electrochemical Sensors for On-body and At-home Measurements |
| Session 4 | Room 107 | Chair: Junwoo Park (Sogang University) | ||
| 15:00-15:45 | Radha Boya (University of Manchester) |
Programmable memristors with two-dimensional nanofluidic channels |
| 15:45-16:15 | Johannes Lischner (Imperial College London) |
Hot electrons in metallic nanoparticles: from creation to catalysis |
| 16:15-16:45 | Nikita Kavokine (EPFL) |
Quantum couplings at nanoscale solid-liquid interfaces |