Area of research
Biomedical Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Materials science, Nanoparticle, Spinel, Chemical engineering, Nucleation, and Transmission electron microscopy.
Insights Into Formation and Growth of Colloidal Multielement Alloy Nanoparticles in Solution through In Situ Liquid Cell TEM Study
Predicting column heights and elemental composition in experimental transmission electron microscopy images of high-entropy oxides using deep learning
In situ formation of stable solid electrolyte interphase with high ionic conductivity for long lifespan all-solid-state lithium metal batteries
Multimetallic glycerolate as a precursor template of spherical porous high-entropy oxide microparticles
<i>In Situ</i> Microscopic Studies on the Interaction of Multi-Principal Element Nanoparticles and Bacteria
Collagen membrane functionalized with magnesium oxide via room-temperature atomic layer deposition promotes osteopromotive and antimicrobial properties
Real-time TEM observations of ice formation in graphene liquid cell
Ta–TiOx nanoparticles as radical scavengers to improve the durability of Fe–N–C oxygen reduction catalysts
Electrochemical synthesis of high entropy hydroxides and oxides boosted by hydrogen evolution reaction
Correlating Magnetic Hyperthermia and Magnetic Resonance Imaging Contrast Performance of Cubic Iron Oxide Nanoparticles with Crystal Structural Integrity
Ultrafast Synthesis of High Entropy Oxide Nanoparticles by Flame Spray Pyrolysis
In Situ Liquid‐Cell TEM Observation of Multiphase Classical and Nonclassical Nucleation of Calcium Oxalate
Targeted Sonodynamic Destruction of Glioblastoma Cells Using Antibody–Titanium Dioxide Nanoparticle Conjugates
STEM-EELS Analysis of High Entropy Oxide Nanoparticles
Highly‐Cyclable Room‐Temperature Phosphorene Polymer Electrolyte Composites for Li Metal Batteries
<p>TEM Studies on Antibacterial Mechanisms of Black Phosphorous Nanosheets</p>
Novel PMMA bone cement nanocomposites containing magnesium phosphate nanosheets and hydroxyapatite nanofibers
Facile hydrothermal synthesis of antibacterial multi-layered hydroxyapatite nanostructures with superior flexibility