Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Redox, Flow battery, Chemistry, Materials science, Catalysis, and Membrane.
Rescue of dead MnO2 for stable electrolytic Zn–Mn redox-flow battery: a metric of mediated and catalytic kinetics
Redox Targeting‐based Neutral Aqueous Flow Battery with High Energy Density and Low Cost
On-Chip 3D Zn/NiOOH Helical Electrodes for High-Energy-Density Microbattery
Advancements and Challenges in Potassium Ion Batteries: A Comprehensive Review
Iron phthalocyanine with coordination induced electronic localization to boost oxygen reduction reaction
A cost-effective nafion/lignin composite membrane with low vanadium ion permeation for high performance vanadium redox flow battery
Ion Gel Capacitively Coupled Tribotronic Gating for Multiparameter Distance Sensing
Versatile Triboiontronic Transistor <i>via</i> Proton Conductor
A universal and arbitrary tactile interactive system based on self-powered optical communication
Redox targeting-based flow batteries
A green SPEEK/lignin composite membrane with high ion selectivity for vanadium redox flow battery
Graphene coated carbon felt as a high-performance electrode for all vanadium redox flow batteries
A low-cost SPEEK-K type membrane for neutral aqueous zinc-iron redox flow battery
SPEEK Membrane of Ultrahigh Stability Enhanced by Functionalized Carbon Nanotubes for Vanadium Redox Flow Battery
Ultrathin mixed matrix membranes containing two-dimensional metal-organic framework nanosheets for efficient CO2/CH4 separation
Proton enhanced dynamic battery chemistry for aprotic lithium–oxygen batteries
Nernstian-Potential-Driven Redox-Targeting Reactions of Battery Materials
Unleashing the Power and Energy of LiFePO<sub>4</sub>-Based Redox Flow Lithium Battery with a Bifunctional Redox Mediator
Decomposing lithium carbonate with a mobile catalyst
A redox flow lithium battery based on the redox targeting reactions between LiFePO<sub>4</sub>and iodide
Redox-Mediated ORR and OER Reactions: Redox Flow Lithium Oxygen Batteries Enabled with a Pair of Soluble Redox Catalysts
High–energy density nonaqueous all redox flow lithium battery enabled with a polymeric membrane
Dual redox catalysts for oxygen reduction and evolution reactions: towards a redox flow Li–O<sub>2</sub> battery