Area of research
Materials Chemistry · Renewable Energy, Sustainability and the Environment
Research interest
Research focused on Graphene and Photoluminescence, with related work in Quantum dot, Tafel equation, Sonodynamic therapy. Notable publications include 'C 3 N—A 2D Crystalline, Hole‐Free, Tunable‐Narrow‐Bandgap Semiconductor with Ferromagnetic Properties', 'Carbon‐Based Quantum Dots with Solid‐State Photoluminescent: Mechanism, Implementation, and Application', and 'Interface Engineered W x C@WS 2 Nanostructure for Enhanced Hydrogen Evolution Catalysis'.
Machine learning‐driven advances in carbon‐based quantum dots: Opportunities accompanied by challenges
Bidirectionally High‐Thermally Conductive Graphite Films Derived from Aramid for Thermal Management in Electronics
Precursor Symmetry Triggered Modulation of Fluorescence Quantum Yield in Graphene Quantum Dots
Symmetry‐Triggered Tunable Phosphorescence Lifetime of Graphene Quantum Dots in a Solid State
Inducing Directional Charge Delocalization in 3D‐Printable Micro‐Supercapacitors Based on Strongly Coupled Black Phosphorus and ReS<sub>2</sub> Nanocomposites
Accelerated proton dissociation in an excited state induces superacidic microenvironments around graphene quantum dots
Achieving Ultra‐High Heat Flux Transfer in Graphene Films via Tunable Gas Escape Channels
Fabrication of Carbon‐Based Quantum Dots via a “Bottom‐Up” Approach: Topology, Chirality, and Free Radical Processes in “Building Blocks”
Tumor diagnosis using carbon-based quantum dots: Detection based on the hallmarks of cancer
Nonlinear Optical Properties from Engineered 2D Materials
Degradation Chemistry and Kinetic Stabilization of Magnetic CrI<sub>3</sub>
Graphene Quantum Dots with Pyrrole N and Pyridine N: Superior Reactive Oxygen Species Generation Efficiency for Metal‐Free Sonodynamic Tumor Therapy
Bandgap engineering of two-dimensional C3N bilayers
Sensitive, Reusable, Surface-Enhanced Raman Scattering Sensors Constructed with a 3D Graphene/Si Hybrid
Delocalized electrochemical exfoliation toward high-throughput fabrication of high-quality graphene
Carbon‐Based Quantum Dots with Solid‐State Photoluminescent: Mechanism, Implementation, and Application
Imaging Cellular Aerobic Glycolysis using Carbon Dots for Early Warning of Tumorigenesis
Polarizing Graphene Quantum Dots toward Long-Acting Intracellular Reactive Oxygen Species Evaluation and Tumor Detection
Graphite-N Doped Graphene Quantum Dots as Semiconductor Additive in Perovskite Solar Cells
Green preparation of lattice phosphorus doped graphene quantum dots with tunable emission wavelength for bio-imaging
Anode coverage for enhanced electrochemical oxidation: a green and efficient strategy towards water-dispersible graphene
Selective supramolecular interaction of ethylenediamine functionalized graphene quantum dots: Ultra-sensitive photoluminescence detection for nickel ion in vitro
Promising Fast Energy Transfer System Between Graphene Quantum Dots and the Application in Fluorescent Bioimaging
C<sub>3</sub>N—A 2D Crystalline, Hole‐Free, Tunable‐Narrow‐Bandgap Semiconductor with Ferromagnetic Properties
Interface Engineered W<i><sub>x</sub></i>C@WS<sub>2</sub> Nanostructure for Enhanced Hydrogen Evolution Catalysis
Electrochemical Cutting in Weak Aqueous Electrolytes: The Strategy for Efficient and Controllable Preparation of Graphene Quantum Dots
Kinetically Enhanced Bubble-Exfoliation of Graphite toward High-Yield Preparation of High-Quality Graphene
Insights into the Oxidation Mechanism of sp<sup>2</sup>–sp<sup>3</sup> Hybrid Carbon Materials: Preparation of a Water-Soluble 2D Porous Conductive Network and Detectable Molecule Separation
Integrated High-Performance Infrared Phototransistor Arrays Composed of Nonlayered PbS–MoS<sub>2</sub> Heterostructures with Edge Contacts
Electron Injection of Phosphorus Doped g‐C<sub>3</sub>N<sub>4</sub> Quantum Dots: Controllable Photoluminescence Emission Wavelength in the Whole Visible Light Range with High Quantum Yield