Area of research
Biomaterials · Materials Chemistry
Research interest
Research interests include Nanotechnology, Chemical physics, Materials science, Nanoparticle, Computer science, and Nucleation.
Atomic-scale identification of active sites of oxygen reduction nanocatalysts
Hierarchically structured bioinspired nanocomposites
Amyloid-like amelogenin nanoribbons template mineralization via a low-energy interface of ion binding sites
Direct correlation of oxygen adsorption on platinum-electrolyte interfaces with the activity in the oxygen reduction reaction
Involvement of prenucleation clusters in calcium phosphate mineralization of collagen
Observing crystal nucleation in four dimensions using atomic electron tomography
Building two-dimensional materials one row at a time: Avoiding the nucleation barrier
Insight into induced charges at metal surfaces and biointerfaces using a polarizable Lennard–Jones potential
: A force field database for cementitious materials including validations, applications and opportunities
Reliable computational design of biological-inorganic materials to the large nanometer scale using Interface-FF
Nature of peptide wrapping onto metal nanoparticle catalysts and driving forces for size control
Simulations of inorganic–bioorganic interfaces to discover new materials: insights, comparisons to experiment, challenges, and opportunities
Elucidation of Peptide-Directed Palladium Surface Structure for Biologically Tunable Nanocatalysts
Molecular Mechanism of Specific Recognition of Cubic Pt Nanocrystals by Peptides and of the Concentration‐Dependent Formation from Seed Crystals
Atomic-scale identification of Pd leaching in nanoparticle catalyzed C–C coupling: effects of particle surface disorder
Tailoring Molecular Specificity Toward a Crystal Facet: a Lesson From Biorecognition Toward Pt{111}
Exploiting Localized Surface Binding Effects to Enhance the Catalytic Reactivity of Peptide-Capped Nanoparticles
Stability, surface features, and atom leaching of palladium nanoparticles: toward prediction of catalytic functionality