Area of research
Electrical and Electronic Engineering
Research interest
Research interests include Visible light communication, Materials science, Optoelectronics, Photodetector, Light-emitting diode, and Computer science.
Beyond 600 Gbps optical interconnect utilizing wavelength division multiplexed visible light laser communication [Invited]
Quasi-2D Perovskite Luminescent Solar Concentrators Enable Large Field-of-View and High-Speed Visible Light Communication
Flexible 2 × 2 multiple access visible light communication system based on an integrated parallel GaN/InGaN micro-photodetector array module
Graphene Readout Silicon‐Based Microtube Photodetectors for Encrypted Visible Light Communication
Enabling Technologies to Achieve Beyond 500 Gbps Optical Intra-Connects Based on WDM Visible Light Laser Communication
High-Speed Micro-LEDs Based on Nano-Engineered InGaN Active Region Towards Chip-to-Chip Interconnections
21.79/17.49 Gbps Full-Duplex Visible Light Communication Enabled by Short-Cavity Blue and Green InGaN/GaN Laser Diodes
A Novel Hybrid Detection Scheme for Visible Light Broadcast Communication and Dedicated Communication Based on a GaN Detector Array
Key Technologies for High-Speed Si-Substrate LED Based Visible Light Communication
31.38 Gb/s GaN-based LED array visible light communication system enhanced with V-pit and sidewall quantum well structure
15.26Gb/s Si-substrate GaN high-speed visible light photodetector with super-lattice structure
Highly Efficient and Stable Self‐Powered Mixed Tin‐Lead Perovskite Photodetector Used in Remote Wearable Health Monitoring Technology
Si-substrate vertical-structure InGaN/GaN micro-LED-based photodetector for beyond 10 Gbps visible light communication
Phosphor-Free Golden Light LED Array for 5.4-Gbps Visible Light Communication Using MIMO Tomlinson-Harashima Precoding
3.76-Gbps yellow-light visible light communication system over 1.2 m free space transmission utilizing a Si-substrate LED and a cascaded pre-equalizer network
Facile fabrication of microlens array on encapsulation layer for enhancing angular color uniformity of color-mixed light-emitting diodes
Optimizing degradation of Reactive Yellow 176 by dielectric barrier discharge plasma combined with TiO2 nano-particles prepared using response surface methodology