Area of research
Computational Mechanics · Ocean Engineering
Research interest
Research interests include Materials science, Physics, Mechanics, Leidenfrost effect, Turbulence, and Convection.
Viscoelastic Worthington jets and droplets produced by bursting bubbles
Symmetry Breaking in Chemical Systems: Engineering Complexity Through Self‐Organization and Marangoni Flows
Aspect Ratio Dependence of Heat Transfer in a Cylindrical Rayleigh-Bénard Cell
Luminescence thermometry for <i>in situ</i> temperature measurements in microfluidic devices
Decoupling Gas Evolution from Water-Splitting Electrodes
Pathways to electrochemical solar-hydrogen technologies
Giant and explosive plasmonic bubbles by delayed nucleation
Comparison of computational codes for direct numerical simulations of turbulent Rayleigh–Bénard convection
The Nucleation Rate of Single O<sub>2</sub> Nanobubbles at Pt Nanoelectrodes
Dispersion of Air Bubbles in Isotropic Turbulence
Time-Resolved In Situ Liquid-Phase Atomic Force Microscopy and Infrared Nanospectroscopy during the Formation of Metal–Organic Framework Thin Films
Dynamic Leidenfrost Effect: Relevant Time and Length Scales
Optimizing cell viability in droplet-based cell deposition
Forces encountered by a sphere during impact into sand
Droplet impact on superheated micro-structured surfaces
Drop Impact on Superheated Surfaces
Highly Focused Supersonic Microjets
Logarithmic Temperature Profiles in Turbulent Rayleigh-Bénard Convection
Fluctuation Theorems for an Asymmetric Rotor in a Granular Gas