Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include 2D Materials and Applications, Graphene research and applications, MXene and MAX Phase Materials, and Perovskite Materials and Applications.
Automated processing and transfer of two-dimensional materials with robotics
A Novel Coating‐Extrusion Method Enabled, High Energy, Power Density, and Scalable Production in Monolithically Integrated Energy Storage Fibers
Atomically precise construction of uniform single-molecule junctions for molecular electronics
Two-dimensional materials for future information technology: status and prospects
Mechanical exfoliation of non-layered metal oxides into ultrathin flakes
Disorder-tuned conductivity in amorphous monolayer carbon
Industrial scale production of fibre batteries by a solution-extrusion method
Direct growth of wafer-scale highly oriented graphene on sapphire
Two-Dimensional Metallic Vanadium Ditelluride as a High-Performance Electrode Material
Optical detection of the susceptibility tensor in two-dimensional crystals
Epitaxial Growth of Centimeter-Scale Single-Crystal MoS<sub>2</sub> Monolayer on Au(111)
Two-Dimensional Metallic NiTe<sub>2</sub> with Ultrahigh Environmental Stability, Conductivity, and Electrocatalytic Activity
Controlled Growth and Thickness‐Dependent Conduction‐Type Transition of 2D Ferrimagnetic Cr<sub>2</sub>S<sub>3</sub> Semiconductors
Recent progress in the tailored growth of two-dimensional hexagonal boron nitride <i>via</i> chemical vapour deposition
Chemical Vapor Deposition Grown Wafer‐Scale 2D Tantalum Diselenide with Robust Charge‐Density‐Wave Order
Atomristor: Nonvolatile Resistance Switching in Atomic Sheets of Transition Metal Dichalcogenides
All Chemical Vapor Deposition Synthesis and Intrinsic Bandgap Observation of MoS<sub>2</sub>/Graphene Heterostructures
Kinetic Nature of Grain Boundary Formation in As‐Grown MoS<sub>2</sub> Monolayers