Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research focused on Detonation and Nanotechnology, with related work in Detonation velocity, Chemical engineering, Metal-organic framework. Notable publications include 'High-energy metal–organic frameworks (HE-MOFs): Synthesis, structure and energetic performance', 'The Effects of Carbon Nanotubes on the Mechanical and Wear Properties of AZ31 Alloy', and 'High-Performance Energetic Characteristics and Magnetic Properties of a Three-Dimensional Cobalt(II) Metal–Organic Framework Assembled with Azido and Triazole'.
The Effects of Carbon Nanotubes on the Mechanical and Wear Properties of AZ31 Alloy
An Ag(<scp>i</scp>) energetic metal–organic framework assembled with the energetic combination of furazan and tetrazole: synthesis, structure and energetic performance
Copper-based energetic MOFs with 3-nitro-1H-1,2,4-triazole: solvent-dependent syntheses, structures and energetic performances
High performance 5-aminotetrazole-based energetic MOF and its catalytic effect on decomposition of RDX
High Energy Density Materials Incorporating 4,5‐Bis(dinitromethyl)‐Furoxanate and 4,5‐Bis(dinitromethyl)‐3‐Oxy‐Furoxanate
High-energy metal–organic frameworks (HE-MOFs): Synthesis, structure and energetic performance
High-Performance Energetic Characteristics and Magnetic Properties of a Three-Dimensional Cobalt(II) Metal–Organic Framework Assembled with Azido and Triazole
Instant high-selectivity Cd-MOF chemosensor for naked-eye detection of Cu(<scp>ii</scp>) confirmed using in situ microcalorimetry
Silver(<scp>i</scp>)-based energetic coordination polymers: synthesis, structure and energy performance
Syntheses, structural analyses and luminescent property of four alkaline-earth coordination polymers
Surfactant-free scalable synthesis of hierarchically spherical Co<sub>3</sub>O<sub>4</sub>superstructures and their enhanced lithium-ion storage performances
Mineralization of unique barium carbonate crystal superstructures controlled by a liquid crystalline phase polymer