Area of research
Molecular Biology · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Chemistry, Membrane, Chemical physics, Biophysics, Molecular dynamics, and Macromolecule.
Crowding beyond excluded volume: A tale of two dimers
Spatiotemporal dynamic and catalytically mediated reconfiguration of compartmentalized cyanuric acid/polyadenine DNA microdroplet condensates
Sugar–protein interactions control protein‐complex stability in crowded Ficoll and dextran solutions
Protecting Proteins from Desiccation Stress Using Molecular Glasses and Gels
Depletion-Induced Self-Assembly of Colloidal Particles on a Solid Substrate
Self-association of cyclodextrin inclusion complexes in a deep eutectic solvent enhances guest solubility
Resolving the enthalpy of protein stabilization by macromolecular crowding
Not Always Sticky: Specificity of Protein Stabilization by Sugars Is Conferred by Protein–Water Hydrogen Bonds
Deep Eutectic Solvents for Efficient Drug Solvation: Optimizing Composition and Ratio for Solubility of β-Cyclodextrin
Spontaneous Patterning of Binary Ligand Mixtures on CdSe Nanocrystals: From Random to Janus Packing
Capturing Lipid Nanodisc Shape and Properties Using a Continuum Elastic Theory
Amyloid Aggregation Is Potently Slowed Down by Osmolytes Due to Compaction of Partially Folded State
Unraveling the enthalpy of macromolecular crowding
Macromolecular Crowding Is More than Hard-Core Repulsions
Entropy of Branching Out: Linear versus Branched Alkylthiols Ligands on CdSe Nanocrystals
Calcium Ions Promote Membrane Fusion by Forming Negative-Curvature Inducing Clusters on Specific Anionic Lipids
β-Hairpin Miniprotein Stabilization in Trehalose Glass Is Facilitated by an Emergent Compact Non-Native State
Osmolytes and crowders regulate aggregation of the cancer-related L106R mutant of the Axin protein
Molecular self-assembly under nanoconfinement: indigo carmine scroll structures entrapped within polymeric capsules
Restructuring a Deep Eutectic Solvent by Water: The Nanostructure of Hydrated Choline Chloride/Urea
Properties of Aqueous Trehalose Mixtures: Glass Transition and Hydrogen Bonding
Confinement in Nanodiscs Anisotropically Modifies Lipid Bilayer Elastic Properties
Heterogeneous Electrofreezing of Super‐Cooled Water on Surfaces of Pyroelectric Crystals is Triggered by Trigonal Planar Ions
Bridges of Calcium Bicarbonate Tightly Couple Dipolar Lipid Membranes
Heterogeneous Electrofreezing of Super‐Cooled Water on Surfaces of Pyroelectric Crystals is Triggered by Trigonal Planar Ions
Stressing crystals with solutes: Effects of added solutes on crystalline caffeine and their relevance to determining transfer free energies
A local instantaneous surface method for extracting membrane elastic moduli from simulation: Comparison with other strategies
The taste of KCl – What a difference a sugar makes
Determination of bending rigidity and tilt modulus of lipid membranes from real-space fluctuation analysis of molecular dynamics simulations
Revisiting Hydrogen Bond Thermodynamics in Molecular Simulations