Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research focused on In vivo and Supercapacitor, with related work in Golgi apparatus, Quantum yield, Nickel. Notable publications include 'Enhanced-fluorescent imaging and targeted therapy of liver cancer using highly luminescent carbon dots-conjugated foliate', 'Green-emissive carbon quantum dots with high fluorescence quantum yield: Preparation and cell imaging', and 'Surface state modulation of blue-emitting carbon dots with high quantum yield and high product yield'.
Synthesis of magnetic carbon dot drug complex for targeting to nucleus in liver cancer therapy and fluorescence/magnetic resonance dual-modal imaging
Research Progress on Nucleus-Targeting Carbon Nanoparticles for Tumor Imaging and Therapy
Nucleus delivery of doxorubicin by gadolinium-functionalized carbon dot drug delivery system for HCC imaging and therapy
Facile electrodeposition of CoMn2O4 nanoparticles on nickel foam as an electrode material for supercapacitors
An efficient electrodeposition approach for preparing CoMn-hydroxide on nickel foam as high-performance electrodes in aqueous hybrid supercapacitors
Electrochemical non-enzymatic glucose biosensors based on Au-thiol-linked molecular architectures
Folic acid functionalized gadolinium-doped carbon dots as fluorescence / magnetic resonance imaging contrast agent for targeted imaging of liver cancer
Nucleus-targeting orange-emissive carbon dots delivery adriamycin for enhanced anti-liver cancer therapy
Carbon dots based on targeting unit inheritance strategy for Golgi apparatus-targeting imaging
Surface state modulation of blue-emitting carbon dots with high quantum yield and high product yield
Cyclooxygenase-2-targeting fluorescent carbon dots for the selective imaging of Golgi apparatus
Orange-emissive carbon quantum dots for ligand-directed Golgi apparatus-targeting and <i>in vivo</i> imaging
Green-emissive carbon quantum dots with high fluorescence quantum yield: Preparation and cell imaging
Research progress in the use of cationic carbon dots for the integration of cancer diagnosis with gene treatment
Enhanced-fluorescent imaging and targeted therapy of liver cancer using highly luminescent carbon dots-conjugated foliate
Advances in organelle-targeting carbon dots
Engineering the metathesis and oxidation-reduction reaction in solid state at room temperature for nanosynthesis