Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Microglia and Supercapacitor, with related work in Graphene, Energy storage, Genotype. Notable publications include 'Microglia-derived TNF-α mediates Müller cell activation by activating the TNFR1-NF-κB pathway', 'ATP-P2X7R-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension', and 'Evolution of drug-resistant mutations in HBV genomes in patients with treatment failure during the past seven years (2010–2016)'.
Energy storage mechanism of high-loading MnO2 for aqueous ammonium-ion supercapacitor
The integration of Ni-Co oxide/phosphide/sulphide composites into nanowire arrays on Ni foam as supercapacitor electrode for boosting energy storage performance
Laser-assisted synthesis of MnO and 3D graphene composites for wide-voltage flexible planar microcapacitors
Laser-induced fabrication of porous graphene for flexible planar microsupercapacitors with wide voltage window
ATP-P2X7R-mediated microglia senescence aggravates retinal ganglion cell injury in chronic ocular hypertension
An Improved Coupled Level Set and Continuous Moment-of-Fluid Method for Simulating Multiphase Flows with Phase Change
Pro-Fibrotic Role of Interleukin-4 in Influencing Idiopathic Epiretinal Membrane in Cataract Patients: Analysis From Clinical–Experimental Approaches
Microglia-derived TNF-α mediates Müller cell activation by activating the TNFR1-NF-κB pathway
Evolution of drug-resistant mutations in HBV genomes in patients with treatment failure during the past seven years (2010–2016)