Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, In vivo, Anode, Silicon, Oxidative stress, and Reactive oxygen species.
FeCu–P/carbon dots with multi-enzyme activity catalyze reactive oxygen species production for enhanced antibacterial activity
Chitosan-Rapamycin Carbon Dots Alleviate Glaucomatous Retinal Injury by Inducing Autophagy to Promote M2 Microglial Polarization
Rapamycin functionalized carbon Dots: Target-oriented synthesis and suppression of vascular cell senescence
Target-Oriented Synthesis of Triphenylphosphine Functionalized Carbon Dots with Negative Charge for ROS Scavenging and Mitochondrial Targeting
Nitrogen-Doped Carbon Dots with Oxidation Stress Protective Effects for Reactive Oxygen Species Scavenging on Hepatic Ischemia–Reperfusion Injury
Highly Conductive Ultrafine N-Doped Silicon Powders Prepared by High-Frequency Thermal Plasma and Their Application as Anodes for Lithium-Ion Batteries
Microwave humidity sensor based on carbon dots-decorated MOF-derived porous Co3O4 for breath monitoring and finger moisture detection
Doxorubicin-loaded fluorescent carbon dots with PEI passivation as a drug delivery system for cancer therapy
Multiscale Buffering Engineering in Silicon–Carbon Anode for Ultrastable Li-Ion Storage
The hydrothermal treated Zn-incorporated titania based microarc oxidation coating: Surface characteristics, apatite-inducing ability and antibacterial ability
Enhanced Capacity of NiO Nanocubes with High Dispersion and Exposed Facets Reinforced by Thermal Plasma
Visual in vivo degradation of injectable hydrogel by real-time and non-invasive tracking using carbon nanodots as fluorescent indicator
Microarc oxidation coating covered Ti implants with micro-scale gouges formed by a multi-step treatment for improving osseointegration
Scalable production of 3D plum-pudding-like Si/C spheres: Towards practical application in Li-ion batteries
Hydrosoluble, UV-crosslinkable and injectable chitosan for patterned cell-laden microgel and rapid transdermal curing hydrogel in vivo
High-yield synthesis of strong photoluminescent N-doped carbon nanodots derived from hydrosoluble chitosan for mercury ion sensing via smartphone APP
Ultraviolet-Crosslinkable and Injectable Chitosan/Hydroxyapatite Hybrid Hydrogel for Critical Size Calvarial Defect Repair In Vivo