Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include 2D Materials and Applications, Perovskite Materials and Applications, MXene and MAX Phase Materials, and Graphene research and applications.
Preparation and application of NiS2/NiSe2 heterostructure as a sulfur host in lithium-sulfur batteries
Technology Roadmap for Flexible Sensors
Having Your Cake and Eating It Too: Electrode Processing Approach Improves Safety and Electrochemical Performance of Lithium-Ion Batteries
Van der Waals epitaxial growth of air-stable CrSe2 nanosheets with thickness-tunable magnetic order
Approaching the intrinsic exciton physics limit in two-dimensional semiconductor diodes
Highly Selective Synthesis of Monolayer or Bilayer WSe<sub>2</sub> Single Crystals by Pre-annealing the Solid Precursor
Ultrafast growth of large single crystals of monolayer WS2 and WSe2
Programmable devices based on reversible solid-state doping of two-dimensional semiconductors with superionic silver iodide
Redox Control of Charge Transport in Vertical Ferrocene Molecular Tunnel Junctions
Direct van der Waals epitaxial growth of 1D/2D Sb2Se3/WS2 mixed-dimensional p-n heterojunctions
Solution-processable 2D semiconductors for high-performance large-area electronics
Synthesis of Ultrathin Metallic MTe<sub>2</sub> (M = V, Nb, Ta) Single‐Crystalline Nanoplates
Thickness-Tunable Synthesis of Ultrathin Type-II Dirac Semimetal PtTe<sub>2</sub> Single Crystals and Their Thickness-Dependent Electronic Properties
Chemical synthesis of two-dimensional atomic crystals, heterostructures and superlattices
Chemical Vapor Deposition Growth of Single Crystalline CoTe<sub>2</sub> Nanosheets with Tunable Thickness and Electronic Properties
Synthesis of 2D Layered BiI<sub>3</sub>Nanoplates, BiI<sub>3</sub>/WSe<sub>2</sub>van der Waals Heterostructures and Their Electronic, Optoelectronic Properties
Growth of Single-Crystalline Cadmium Iodide Nanoplates, CdI<sub>2</sub>/MoS<sub>2</sub> (WS<sub>2</sub>, WSe<sub>2</sub>) van der Waals Heterostructures, and Patterned Arrays
The fabrication of ReS 2 flowers at controlled locations by chemical vapor deposition
Thermally Induced Graphene Rotation on Hexagonal Boron Nitride
TiO<sub>2</sub> passivation for improved efficiency and stability of ZnO nanorods based perovskite solar cells
Metal Induced Growth of Transition Metal Dichalcogenides at Controlled Locations
Controlled loading and release of methylene blue in layer-by-layer assembled polyelectrolyte films
Super-Resolution Imaging of Surface Adsorption on Single Nanoparticles for Electrochemical Dechlorination
FRG: Collaborative Research: Variationally Stable Neural Networks for Simulation, Learning, and Experimental Design of Complex Physical Systems
Scalable Computational Methods for Large-Scale Stochastic Optimization under High-Dimensional Uncertainty
Scalable Computational Methods for Large-Scale Stochastic Optimization under High-Dimensional Uncertainty
I-Corps: Airborne Chemical Sensing Platform for Remote and Hazardous Environments
OP: Collaborative Research: Landau levels and Dirac points in Continuous Photonic Systems
Collaborative Research: Nonlinear Optics of Photonic Topological Insulators
Nanoscale Mapping and Manipulation of Activity on Single Catalytic Nanocrystals/Nanostructures
Collaborative Research: Digitally Addressable and Scalable Laser Fabrication of 3D Gradient Index Nanostructures and Nanophotonics Circuits
Adaptive Laser Shock Micro-Forming Process and Metrology
Attending the NSF CBET Grantee Conference
EAGER: Fiber Sensors Networks for Crude Oil Migration Monitoring In Ocean
Collaborative Research: Laser Manufacturing of Three-Dimensional Lightwave Circuits and Nano-Optical Devices
Single-Molecule Investigation of Nanocatalysis
MRI: Acquisition of an Ultrafast Laser System for the Fabrication of Three-Dimensional Photonic Devices
CAREER: Bioinorganic Chemistry on a Single-Molecule Basis
CAREER: Multi-Functional, High-Sensitivity Optical Sensors in Microstructured Fibers
GOALI:Fabrication of Three-Dimensional Chiral Photonic Circuits and Electro-Optical Devices in Silica Using Femtosecond Ultrafast Lasers
NGS: Collaborative research : A Component-based Software Environment for Simulation, Emulation, and Synthesis of Network Protocols in Next Generation Software