Area of research
Materials Chemistry · Catalysis
Research interest
Research interests include Hydrogen storage, Materials science, Hydrogen, Dehydrogenation, Catalysis, and Alloy.
MXene-supported V2O5 nanocatalysts: Boosting hydrogen storage efficiency in MgH2 through synergistic catalysis
Fan-like structured Ni9S8/Co3O4 core-shell nanoarray as high-performance electrode for high-rate supercapacitors
Layered MoS2-supported and metallic Ni-doped MgH2 towards enhanced hydrogen storage kinetics and cycling stability
Enhanced electrochemical storage capability of NiCo2O4 nanosheet/nanowires hybrid arrays via synergistic collaborative MXene/Graphene
MXene as a hydrogen storage material
Nb-doped layered oxides with P2/O3 biphasic as high-rate, air-stable cathodes for sodium-ion batteries
Influence of a three-dimensional honeycomb Fe/N-MXene catalyst on the hydrogen storage performance of MgH2
Reversible hydrogen storage in AlH <sub>3</sub> −LiNH <sub>2</sub> system
Boosting MgH2 hydrogen storage with hydrothermally synthesized FL-V2C-MnO2: Achieving superior performance at low temperatures
The effect of mild oxidation induced by heat treatment on the pseudocapacitance performance of Ti3C2T MXene
A DFT study on the synergistic catalytic effect of double transition metals doping on hydrogenation of Mg17Al12
Planar Patterning Design and Energy Storage Performance Comparison of Laser‐Induced Graphene Flexible Supercapacitors
Multifunctional MXene/CNT-Zr 3D composite cathode for long cycling stability in high-performance lithium-sulfur batteries
Introducing Ni-N-C ternary nanocomposite as an active material to enhance the hydrogen storage properties of MgH2
Multifunction-balanced porous carbon and its application in sulfur-loading host and separator modification for lithium–sulfur batteries
Hybrid of bulk NbC and layered Nb4C3 MXene for tailoring the hydrogen storage kinetics and reversibility of Li–Mg–B–H composite: An experimental and theoretical study
Fin structure optimization for improving heat transfer efficiency and hydrogen absorption rate of metal hydride hydrogen storage tank
Fabrication of V2O3-TiO2-rGO ternary heterojunction composite to enhance the hydrogen storage performance of MgH2
<b>Improvement in hydrogen storage performance of MgH</b> <sub> <b>2</b> </sub> <b>by vanadium doped with ZIF‐8 derived a single‐atom catalyst</b> V–N–C
Enhancing the Hydrogen Storage Properties of Ti–Mn Alloys by Ti Occupying Mn Sites: An Experimental and Theoretical Study
Potassium Ion–Assisted Self–Assembled MXene-K-CNT Composite as High–Quality Sulfur–Loaded Hosts for Lithium–Sulfur Batteries
An experimental and theoretical investigation of the enhanced effect of Ni atom-functionalized MXene composite on the mechanism for hydrogen storage performance in MgH2
Recent Progress of Flexible Solid‐State Supercapacitors: Electrodes, Electrolytes and Practical Application
The effects and mechanisms of two-dimensional V2C and V2CT2 (T = O, F, and OH) on hydrogen adsorption and dissociation properties of MgH2: First-principles calculations
Laser-induced fabrication of porous graphene for flexible planar microsupercapacitors with wide voltage window
Investigation on hydrogenation performance of Mg17Al12 by adding Y
Ti <sub>3</sub> AlCN MAX for tailoring MgH <sub>2</sub> hydrogen storage material: from performance to mechanism
Effect of MOF-derived carbon–nitrogen nanosheets co-doped with nickel and titanium dioxide nanoparticles on hydrogen storage performance of MgH2
Layered niobium carbide enabling excellent kinetics and cycling stability of Li‐Mg‐B‐H hydrogen storage material
Effect of Ti0.9Zr0.1Mn1.5V0.3 alloy catalyst on hydrogen storage kinetics and cycling stability of magnesium hydride