Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Supercapacitor and Anode, with related work in Cathode, Electrochemistry, Metal-organic framework. Notable publications include 'Tailoring Crystal Facets of Metal–Organic Layers to Enhance Photocatalytic Activity for CO 2 Reduction', 'Robust Negative Electrode Materials Derived from Carbon Dots and Porous Hydrogels for High‐Performance Hybrid Supercapacitors', and 'Recent Progress in Stimulus-Responsive Two-Dimensional Metal–Organic Frameworks'.
Titanium-based metal-organic frameworks: Synthesis innovations and multifunctional applications
Metal‐Covalent Organic Frameworks: Design Strategy, Structure Feature, and Applications in Energy Storage
Study on the preparation and properties of zirconium ceramic fiber toughened composite lightweight alkali-activated slag-based high performance thermal insulation material
Biomass-derived carbon applications in the field of supercapacitors: Progress and prospects
Recent Advances in Pristine Iron Triad Metal–Organic Framework Cathodes for Alkali Metal‐Ion Batteries
Deashing Strategy on Biomass Carbon for Achieving High-Performance Full-Supercapacitor Electrodes
Topological hydrogen-bonded organic frameworks (HOFs) and their electronic applications in sensor, memristor, and neuromorphic computing
Recent Advances on Pristine MOF‐Based Electrodes for PIBs: Characteristics, Potassium Storage Mechanisms, and Optimization Strategies
Pillar-Supported 2D Layered MOFs with Abundant Active-Site Distributions for High-Performance Alkaline Supercapacitors
Multi-thiol-supported dicarboxylate-based metal–organic framework with excellent performance for lithium-ion battery
Tailoring Crystal Facets of Metal–Organic Layers to Enhance Photocatalytic Activity for CO<sub>2</sub> Reduction
Recent Progress in Stimulus-Responsive Two-Dimensional Metal–Organic Frameworks
2D Metal–Organic Frameworks (MOFs) for High‐Performance BatCap Hybrid Devices
Porous Cobalt Metal–Organic Frameworks as Active Elements in Battery–Supercapacitor Hybrid Devices
Nanostructured potassium–organic framework as an effective anode for potassium-ion batteries with a long cycle life
Ferrocene-Based Mixed-Valence Metal–Organic Framework as an Efficient and Stable Cathode for Lithium-Ion-Based Dual-Ion Battery
Enhancing the Performance of a Battery–Supercapacitor Hybrid Energy Device Through Narrowing the Capacitance Difference Between Two Electrodes via the Utilization of 2D MOF-Nanosheet-Derived Ni@Nitrogen-Doped-Carbon Core–Shell Rings as Both Negative and Positive Electrodes
Ferrocene-based metal-organic framework as a promising cathode in lithium-ion battery
Constructing a directional ion acceleration layer at WO3/ZnO heterointerface to enhance Li-ion transfer and storage
Photodetectors: Graphdiyne‐Based Flexible Photodetectors with High Responsivity and Detectivity (Adv. Mater. 23/2020)
Brucite structure doped with different amounts of Er(III) and their infrared emissions
A simple and recyclable molten-salt route to prepare superthin biocarbon sheets based on the high water-absorbent agaric for efficient lithium storage
Insights on interfacial IMCs growth and mechanical strength of asymmetrical Cu/SAC305/Cu-Co system
Robust Negative Electrode Materials Derived from Carbon Dots and Porous Hydrogels for High‐Performance Hybrid Supercapacitors