Area of research
Civil and Structural Engineering · Biomaterials
Research interest
Research focused on Composite material and Molecular dynamics, with related work in Cement, Triethanolamine, Composite number. Notable publications include 'Nano-engineering of construction materials using molecular dynamics simulations: Prospects and challenges', 'Effect of triethanolamine on cement hydration toward initial setting time', and 'Effect of moisture on the mechanical properties of CFRP–wood composite: An experimental and atomistic investigation'.
Molecular investigation on interfacial toughening between silane coupling agent treated glass fiber and cement
Mechanisms of ice crystal growth in nanoconfined spaces of cementitious composites at low temperatures: Insights from molecular dynamics simulations
Effect of natural zeolite on water distribution and migration in low water/binder cement-based composites (LW/B-CC) mixed with seawater: An experimental and computational investigation
Mesoscale modeling to study isolated asphaltene agglomerates
Freezing of water confined between calcium-silicate-hydrate layers: a coarse-grained molecular dynamics study
Role of carbon nanotube in reinforcing cementitious materials: An experimental and coarse-grained molecular dynamics study
Nano-engineering of construction materials using molecular dynamics simulations: Prospects and challenges
Effect of triethanolamine on cement hydration toward initial setting time
Molecular dynamics simulations on adhesion of epoxy-silica interface in salt environment
Understanding the effect of temperature on the interfacial behavior of CFRP-wood composite via molecular dynamics simulations
Effect of Acetyl Group on Mechanical Properties of Chitin/Chitosan Nanocrystal: A Molecular Dynamics Study
Mesoscopic packing of disk-like building blocks in calcium silicate hydrate
Effect of moisture on the mechanical properties of CFRP–wood composite: An experimental and atomistic investigation