KES4-1049
Neuromorphic Displays with Self-assembled Polymers for Biomedical and Robotic Applications
Topic
S4. Colloids, Interfaces, and Molecular Assemblies for Functional Soft Materials
When and Where
Oct 1, 2026
14:25 - 14:50
Room 106
Session Chairs
Jungwook KIM
Presenter(s)
Cheolmin Park (Yonsei university, Materials Science and Engineering)
Co-Author(s)
Abstract
Human-interactive technologies play a crucial role in intelligent IoT, bioelectronics, and emerging physical AI regimes. Sensory neuromorphic displays (SNDs) integrate sensory processing, computation, memory, and visualization into a unified system, addressing the key limitations of traditional displays such as limited adaptability, high power consumption, and lack of contextual awareness. By leveraging neuromorphic computing principles and advanced device architectures, these displays enable real-time, adaptive responses to environmental stimuli, enhancing energy efficiency and interactivity. The development of innovative one-integrated platforms with optimized architectures where all the functional components are converged is essential to achieve highly efficient and fast information management. The presentation introduces a light-emitting tactile sensory neuromorphic display for real-time monitoring of finger rehabilitation movements. The core structure is based on a polymer electrochemical transistor (OECT) with an elastomeric tactile receptor and a molecularly engineered electrochemiluminescent ion gel as the light-emitting layer. The approach presents a highly interactive, low-power solution for personalized rehabilitation monitoring. The SND platform also detects, memorizes, and visualizes magnetic field with an elastomeric gate modified with ferromagnetic fillers, demonstrating its feasibility and versatility for compact, energy-efficient wearable and physical AI robotic applications.













