Area of research
Electronic, Optical and Magnetic Materials · Electrical and Electronic Engineering
Research interest
Research focused on Supercapacitor and Electrode, with related work in Electrochemistry, Electrochemical energy storage, Composite number. Notable publications include 'Polythiophene Coating-encapsulated CoNi2S4@HCS for quasi-solid-state hybrid supercapacitors with gel electrolyte containing gelatin', 'Hypertriglyceridemia as a risk factor for complications of acute pancreatitis and the development of a severity prediction model', and 'N-doped hollow mesoporous carbon spheres modified with cobalt–nickel hydroxide for supercapacitor applications'.
N-doped hollow mesoporous carbon spheres modified with cobalt–nickel hydroxide for supercapacitor applications
Enhancing Electrochemical Energy Storage with 3D Ti <sub>3</sub> C <sub>2</sub> T <sub>x</sub> Hybrid Electrode Materials
High-performance supercapacitor based on 3D Ti3C2Tx electrodes and sulfonated lignin gel electrolyte
Cobalt-Nickel Hydroxide Modified N-Doped Hollow Mesoporous Carbon Spheres for High Energy Density Supercapacitors
Preparation of PEDOT/Ti3C2Tx/Co3S2 composite for quasi−solid−state hybrid supercapacitor with enhanced electrochemical performance
Unleashing the power of 3D Ti3C2Tx: A breakthrough in electrochemical energy storage
Hydroxyl−functionalized polythiophene−coated CoNi−SeS/hollow carbon sphere electrodes for quasi−solid−state supercapacitors
Unveiling the potential: Asymmetric supercapacitors with conductive polymers/Ti3C2Tx/Ni3S4 electrodes deliver high energy densities
Early clinical predictors of infected pancreatic necrosis: a multicentre cohort study
Boron and Nitrogen Co-Doped Carbon Nano Framework Composites for High Performance Energy Storage
Polythiophene Coating-encapsulated CoNi2S4@HCS for quasi-solid-state hybrid supercapacitors with gel electrolyte containing gelatin
Hypertriglyceridemia as a risk factor for complications of acute pancreatitis and the development of a severity prediction model
Hydroxyl−Functionalized Polythiophene−Coated Coni−Ses/Hollow Carbon Sphere Electrodes for Quasi−Solid−State Supercapacitors