Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Thin-Film Transistor Technologies, Perovskite Materials and Applications, Advanced Sensor and Energy Harvesting Materials, and 2D Materials and Applications.
Artificial Optoelectronic Synapse Featuring Bidirectional Post‐Synaptic Current for Compact and Energy‐Efficient Neural Hardware
High energy density in artificial heterostructures through relaxation time modulation
Advancing perovskite solar cell commercialization: Bridging materials, vacuum deposition, and AI-assisted automation
Junctionless Negative‐Differential‐Resistance Device Using 2D Van‐Der‐Waals Layered Materials for Ternary Parallel Computing
Perovskite nanocomposites: synthesis, properties, and applications from renewable energy to optoelectronics
Vertical full-colour micro-LEDs via 2D materials-based layer transfer
Photonic van der Waals integration from 2D materials to 3D nanomembranes
Non-epitaxial single-crystal 2D material growth by geometric confinement
Monolithic 3D integration of 2D materials-based electronics towards ultimate edge computing solutions
High-throughput manufacturing of epitaxial membranes from a single wafer by 2D materials-based layer transfer process
Chip-less wireless electronic skins by remote epitaxial freestanding compound semiconductors
Suppressing ion migration in metal halide perovskite via interstitial doping with a trace amount of multivalent cations
Reconfigurable heterogeneous integration using stackable chips with embedded artificial intelligence
Graphene nanopattern as a universal epitaxy platform for single-crystal membrane production and defect reduction
Uncovering material deformations via machine learning combined with four-dimensional scanning transmission electron microscopy
Impact of 2D–3D Heterointerface on Remote Epitaxial Interaction through Graphene
Stone-Wales defect-rich carbon-supported dual-metal single atom sites for Zn-air batteries
Laser‐Irradiated Holey Graphene‐Supported Single‐Atom Catalyst towards Hydrogen Evolution and Oxygen Reduction
Microwave humidity sensor based on carbon dots-decorated MOF-derived porous Co3O4 for breath monitoring and finger moisture detection
Heterogeneous integration of single-crystalline complex-oxide membranes
Ledge-directed epitaxy of continuously self-aligned single-crystalline nanoribbons of transition metal dichalcogenides
Graphene-assisted spontaneous relaxation towards dislocation-free heteroepitaxy
Versatile on-chip light coupling and (de)multiplexing from arbitrary polarizations to controlled waveguide modes using an integrated dielectric metasurface
Perovskite-polymer composite cross-linker approach for highly-stable and efficient perovskite solar cells
Epitaxial growth and layer-transfer techniques for heterogeneous integration of materials for electronic and photonic devices
High-performance perovskite/Cu(In,Ga)Se <sub>2</sub> monolithic tandem solar cells
Polarity governs atomic interaction through two-dimensional materials
Extremely stable graphene electrodes doped with macromolecular acid
A Bifunctional Lewis Base Additive for Microscopic Homogeneity in Perovskite Solar Cells
Photonic van der Waals integration of functional nanomembranes towards multifunctional heterogeneous photonic integrated circuits
Collaborative Research: FuSe: Monolithic 3D Integration (M3D) of 2D Materials-Based CFET Logic Elements towards Advanced Microelectronics
Collaborative Research: Remote epitaxy on van der Waals materials: unveiling adatom interaction, growing single-crystal membranes, and producing unconventional heterostructures