Area of research
Materials Chemistry · Biomedical Engineering
Research interest
Research interests include Materials science, Optoelectronics, Photodetector, Photocurrent, Photodetection, and Responsivity.
Infrared optoelectronics in twisted black phosphorus
Giant intrinsic photovoltaic effect in one-dimensional van der Waals grain boundaries
Low-power MoS2 metal–semiconductor field effect transistors (MESFETs) based on standard metal–semiconductor contact
Performance-Tunable MoS<sub>2</sub> Homojunction Photodiode Based on Different Built-In Electric Field
Reconfigurable, non-volatile neuromorphic photovoltaics
Fast near-infrared photodetectors from p-type SnSe nanoribbons
Unipolar barrier photodetectors based on van der Waals heterostructures
Blackbody-sensitive room-temperature infrared photodetectors based on low-dimensional tellurium grown by chemical vapor deposition
Controllable Doping in 2D Layered Materials
Ternary 2D Layered Material FePSe<sub>3</sub> and Near‐Infrared Photodetector
Narrowing Bandgap of HfS<sub>2</sub> by Te Substitution for Short‐Wavelength Infrared Photodetection
Direct Printing for Additive Patterning of Silver Nanowires for Stretchable Sensor and Display Applications
Fully Printed Stretchable Thin-Film Transistors and Integrated Logic Circuits
(Invited) Fully-Printed Stretchable Electronic Devices and Circuits
Surface Plasmon‐Enhanced Photodetection in Few Layer MoS<sub>2</sub> Phototransistors with Au Nanostructure Arrays
Fully Printed Foldable Integrated Logic Gates with Tunable Performance Using Semiconducting Carbon Nanotubes
High-Responsivity Graphene/InAs Nanowire Heterojunction Near-Infrared Photodetectors with Distinct Photocurrent On/Off Ratios
Anomalous and Highly Efficient InAs Nanowire Phototransistors Based on Majority Carrier Transport at Room Temperature