Area of research
Materials Chemistry · Pulmonary and Respiratory Medicine
Research interest
Research interests include Graphene research and applications, 2D Materials and Applications, Vasculitis and related conditions, and MXene and MAX Phase Materials.
Kinetic acceleration of MoS<sub>2</sub> growth by oxy-metal-organic chemical vapor deposition.
A bit-parallel molybdenum disulfide computer built through multi-level co-optimization
Author Correction: Scaled crystalline antimony ohmic contacts for two-dimensional transistors
An index-free sparse neural network using two-dimensional semiconductor ferroelectric field-effect transistors
Residue-free wafer-scale direct imprinting of two-dimensional materials
Residue-free wafer-scale direct imprinting of two-dimensional materials
Homoepitaxial growth of large-area rhombohedral-stacked MoS<sub>2</sub>.
Scaled crystalline antimony ohmic contacts for two-dimensional transistors
Robust epitaxy of single-crystal transition-metal dichalcogenides on lanthanum-passivated sapphire.
Integrable selective-area inverse n-doping of WSe<sub>2</sub> by ultrathin CaF<sub>2</sub> dielectrics for CMOS
Enhanced electronic property of wafer-scale monolayer MoS2 through S/Mo ratio optimization
Designable excitonic effects in van der Waals artificial crystals with exponentially growing thickness.
Two-dimensional materials for future information technology: status and prospects
Integration of high-κ native oxides of gallium for two-dimensional transistors
Integration of high-κ native oxides of gallium for two-dimensional transistors
Ultralow-pressure-driven polarization switching in ferroelectric membranes.
Large-scale integration of CaF2 with quasi-vdW interface on two-dimensional FETs
Investigation of InGaN-based flexible RGB micro-light-emitting diodes and their monolithic integration
Residue-free wafer-scale direct imprinting of two-dimensional materials
Approaching the quantum limit in two-dimensional semiconductor contacts.
Substrate engineering for wafer-scale two-dimensional material growth: strategies, mechanisms, and perspectives
Two-dimensional semiconductor integrated circuits operating at gigahertz frequencies
An in-memory computing architecture based on a duplex two-dimensional material structure for in situ machine learning.
Substrate engineering for wafer-scale two-dimensional material growth: strategies, mechanisms, and perspectives.
CXCL16 Promotes Ly6Chigh Monocyte Infiltration and Impairs Heart Function after Acute Myocardial Infarction
Nanomechanical Modeling of the Bending Response of Silicon Nanowires
An in-memory computing architecture based on a duplex 2D material structure for in-situ machine learning
Uniform nucleation and epitaxy of bilayer molybdenum disulfide on sapphire.
Effect of Native Oxide on Stress in Silicon Nanowires: Implications for Nanoelectromechanical Systems
Epitaxial growth of wafer-scale molybdenum disulfide semiconductor single crystals on sapphire.