Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Nanotechnology, Condensed matter physics, van der Waals force, Radiolysis, and Electron microscope.
The Influence of Ionizing Radiation on Quantification for In Situ and Operando Liquid‐Phase Electron Microscopy
Enhanced ferromagnetism in monolayer Cr<sub>2</sub>Te<sub>3</sub> via topological insulator coupling
Electric Field Control of Magnetic Skyrmion Helicity in a Centrosymmetric 2D van der Waals Magnet
Defect Complexes in CrSBr Revealed Through Electron Microscopy and Deep Learning
High energy density in artificial heterostructures through relaxation time modulation
Materials beyond monolayers: The magnetic quasi-1D semiconductor CrSBr
Effect of Surface Oxidation and Crystal Thickness on the Magnetic Properties and Magnetic Domain Structures of Cr<sub>2</sub>Ge<sub>2</sub>Te<sub>6</sub>
Field-Driven Solid-State Defect Control of Bilayer Switching Devices
The Bulk van der Waals Layered Magnet CrSBr is a Quasi-1D Material
Probing Defects and Spin‐Phonon Coupling in CrSBr via Resonant Raman Scattering
Strain-tunable Berry curvature in quasi-two-dimensional chromium telluride
Temperature Dependent Nanochemistry and Growth Kinetics Using Liquid Cell Transmission Electron Microscopy
Atomic-Scale Mechanisms of MoS<sub>2</sub>Oxidation for Kinetic Control of MoS<sub>2</sub>/MoO<sub>3</sub>Interfaces
Electrochemical Intercalation and Exfoliation of CrSBr into Ferromagnetic Fibers and Nanoribbons
Direct Visualization of Subnanometer Variations in the Excitonic Spectra of 2D/3D Semiconductor/Metal Heterostructures
Nanosecond protonic programmable resistors for analog deep learning
Control of structure and spin texture in the van der Waals layered magnet CrSBr
Sensing the Local Magnetic Environment through Optically Active Defects in a Layered Magnetic Semiconductor
Structural changes in metallic nanoislands on 2D materials during in situ annealing in ultra-high vacuum TEM
Controlling the Nucleation of Metal Nanoislands on Two-dimensional Materials via Focused Ion Beam Patterning
Exploring electronic coupling of optical and phonon excitations at the nanoscale
Modeling nanostructure evolution using temperature-dependent radiolysis and kinetics of nanoscale reactions in liquid cell TEM
Synthesis and self-assembly of one-dimensional nanostructures of a transition metal trichalcogenide
Opportunities of in situ TEM for measuring voltage-driven microstructural changes in memristive devices
Graphene – A Promising Electrode Material in Liquid Cell Electrochemistry
A general strategy for bimetallic Pt-based nano-branched structures as highly active and stable oxygen reduction and methanol oxidation bifunctional catalysts
Electron-beam-driven chemical processes during liquid phase transmission electron microscopy
Nanoscale evolution of interface morphology during electrodeposition
Stability of Schottky and Ohmic Au Nanocatalysts to ZnO Nanowires
Control of Electron Beam-Induced Au Nanocrystal Growth Kinetics through Solution Chemistry