Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Quantum dot, Insulin resistance, Nanotechnology, Protein kinase B, and Optoelectronics.
Advancing Ecofriendly Indium Phosphide Quantum Dots: Comprehensive Strategies toward Color-Pure Luminescence for Wide Color Gamut Displays
Dual-step photo-induced self-assembled hydrogel for endogenous oral mucosal wound healing
Analytical evaluation of heavy metal desorption process from contaminated soil under chelator leaching
From Short Circuit to Completed Circuit: Conductive Hydrogel Facilitating Oral Wound Healing
Cation engineering modified InP quantum dots for enhanced properties and diversified applications
Cement and zeolite stabilization/solidification of heavy metal-contaminated sediments: 841-Day leaching characteristics, mechanisms, and microstructure
A quantitative map of nuclear pore assembly reveals two distinct mechanisms
Recent Updates on Functionalized Silicon Quantum-Dot-Based Nanoagents for Biomedical Applications
Unveiling the novel interfacial anchoring effect of neodymium(III) for realization of blue-emitting InP/ZnS quantum dots
Recent Advances in Metal Chalcogenide Quantum Dots: From Material Design to Biomedical Applications
Advances, Challenges, and Perspectives for Heavy‐Metal‐Free Blue‐Emitting Indium Phosphide Quantum Dot Light‐Emitting Diodes
Synergistic Effect of Halogen Ions and Shelling Temperature on Anion Exchange Induced Interfacial Restructuring for Highly Efficient Blue Emissive InP/ZnS Quantum Dots
Ultraviolet-pumped white light emissive carbon dot based phosphors for light-emitting devices and visible light communication
Amphipathic carbon dots with solvent-dependent optical properties and sensing application
The microtubule polymerase Stu2 promotes oligomerization of the γ-TuSC for cytoplasmic microtubule nucleation
A facile route for highly efficient color-tunable Cu-Ga-Se/ZnSe quantum dots
Tunable emission of Cu (Mn)-doped ZnInS quantum dots via dopant interaction
PRDX1 is involved in palmitate induced insulin resistance via regulating the activity of p38MAPK in HepG2 cells
Microwave-assisted aqueous synthesis of transition metal ions doped ZnSe/ZnS core/shell quantum dots with tunable white-light emission
The Role of PTP1B O-GlcNAcylation in Hepatic Insulin Resistance
TRAM1 protect HepG2 cells from palmitate induced insulin resistance through ER stress-JNK pathway
TAB3 involves in hepatic insulin resistance through activation of MAPK pathway
KPNβ1 promotes palmitate-induced insulin resistance via NF-κB signaling in hepatocytes
PCBP2 regulates hepatic insulin sensitivity via HIF-1α and STAT3 pathway in HepG2 cells
TRAF1 knockdown alleviates palmitate-induced insulin resistance in HepG2 cells through NF-κB pathway