Area of research
Atomic and Molecular Physics, and Optics · Materials Chemistry
Research interest
Research interests include Spectroscopy and Quantum Chemical Studies, Material Dynamics and Properties, Methane Hydrates and Related Phenomena, and Thermodynamic properties of mixtures.
Temperature-Controlled Gas Hydrate Nucleation in the Heterogeneous Environment.
Ion association and hydrogen bonding in potassium dihydrogen phosphate solutions: Insights from molecular dynamics simulations.
SONIC: A Speed of Sound Measurement for Nanobubble Characterization.
Ion Association and Hydrogen Bonding in Potassium Dihydrogen Phosphate Solutions: Insights from Molecular Dynamics Simulations
A comparative study of KDP force-field models: Structural insights for solution and solid state
Hydrate Nucleation in Water Nanodroplets: Key Factors and Molecular Mechanisms
Understanding why constant energy or constant temperature may affect nucleation behavior in MD simulations: A study of gas hydrate nucleation.
Molecular simulation study on the stability of methane hydrate confined in slit-shaped pores
Molecular Insights into the Impacts of Calcite Nanoparticles on Methane Hydrate Formation
Mixed Hydrate Nucleation: Molecular Mechanisms and Cage Structures.
New perspectives on molecular simulation of chemistry and physics in external electric fields
Massive generation of metastable bulk nanobubbles in water by external electric fields.
Molecular Insights into Guest and Composition Dependence of Mixed Hydrate Nucleation
Single Crystal Fibers: Diversified Functional Crystal Material
Single Crystal Fibers: Diversified Functional Crystal Material
Might a 2,2-Dimethylbutane Molecule Serve as a Site to Promote Gas Hydrate Nucleation?
Characterizing key features in the formation of ice and gas hydrate systems.
Nuclear Quantum Effects in Water and Aqueous Systems: Experiment, Theory, and Current Challenges