Our research group works on various topics of current issues with molecular modeling and simulation
methods on Multidimensional Carbon Materials, CO2 Capture, and
Catalysis. Others are listed below,
- Solid State Electrolyte
- Cathode active materials
- High-dimensional carbon materials
- 2D cartalytic materials
- Localized Surface Plasmon
- Defective Graphene
- Self-assembly of CdSe / ZnS QDs
- Self-assembly of Gold nanoparticles with polymer brush
- Rolled (Perforated) Cylindrical Cu
- Chemical Depolymerization
- Recycling of Rare Earth Elements
- Plant's protection mechanism against Ozone
- CO2 sequestration
- Vanillin extraction by ethanol
- Metabolites from food
- Drug Delivery System (Insulin Modeling)
- Antimicrobial protein
- Desalination by Defective Graphene
- Hard core Yukawa fluid
- Free Energy Calculation of Solid by free volume approach
- Self-extraction of water in Graphene sheets
- Confined fluids
- Vacancies in Solid
Also, we put effort for development of simulation methods and programs:
- Study of shock-wave and dense liquid via direct simulation Monte Carlo (DSMC)
method
- Improvement of Lattice Boltzmann method for mesoscale simulation of microfluids
in multiphase system and multiscale modeling with incorporation of Lattice-Boltzmann and
Molecular Dynamics Methods
- Incorporation of quantum mechanical correction to thermodynamic properties of
harmonic and anharmonic potential systems
- Development of new simulation modules by using Etomica, java-based molecular simulation packages, for
pedagogical purpose