Research Area
Research Area
Organic Solar Cells (OSCs)
Focuses on the development of next-generation photovoltaics using carbon-based organic semiconductors.
We aim to realize low-cost, lightweight, and flexible energy sources suitable for wearable electronics and building-integrated applications through solution-processing techniques.
Perovskite Solar Cells (PSCs)
Investigates high-performance solar cells based on perovskite crystal structures.
Our research concentrates on precise crystal growth control and interface engineering to achieve both exceptional power conversion efficiency and long-term operational stability.
Photodetectors (PDs)
Develops high-sensitivity sensors that convert light into electrical signals across a broad spectrum, from UV to IR.
We explore novel materials to enhance detectivity and response speed for applications in optical communications, imaging, and bio-sensing.
Quantum Dots (QDs)
Researches chemically synthesized nanocrystals with size-tunable optical and electrical properties.
We focus on developing high-purity light emitters for displays (QLEDs) and advanced nanomaterials for Short-Wave Infrared (SWIR) sensing technologies.
Strain Sensors
Explores stretchable and wearable sensors capable of detecting mechanical deformations.
By integrating functional nanomaterials with flexible substrates, we develop high-sensitivity devices for human-machine interfaces and real-time health monitoring.
Supercapacitors (SCs)
Studies advanced energy storage systems characterized by high power density and rapid charge-discharge rates.
Our research aims to design nanostructured electrodes to bridge the gap between conventional capacitors and batteries for sustainable energy solutions.