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Program Scientific Program
INS4-1561

Microbubble Elevator Induced Buoyancy Oscillations of Reacting Droplets

Topic

S4. Colloids, Interfaces, and Molecular Assemblies for Functional Soft Materials

When and Where

Nov 30, -0001   00:00 - 00:00
Room 106

Presenter(s)

Xuehua Zhang (University of Alberta)

Co-Author(s)

No co-authors

Abstract

Autonomous droplet oscillations are intriguing and provide a strong inspiration for the development of active soft matter. However, they are often limited by their reliance on external gradients and slow transport. Here, we demonstrate a propulsion mechanism driven by confined interfacial reactions: the hydrogen microbubble elevator. We show that hydrogen evolution within a liquid organic hydrogen carrier (LOHC) droplet and the resulting bubble pinch off modulate the droplet’s effective density, inducing periodic rising and sinking cycles in a stratified fluid. These droplets reach peak velocities of up to 25 mm/s over 2.5 cm trajectories - three orders of magnitude faster than typical Marangoni-driven bouncing - and sustain robust oscillatory motion for up to 25 minutes. The oscillation period and amplitude are programmable through the reaction kinetics, with motion persisting until the bubble-to-droplet size ratio exceeds a critical threshold. With a force balance model, we can quantitatively explain the experimental results and the interplay between gas evolution rates and hydrodynamic forces.
Supported by
Korea Tourism Organization BUSAN TOURISM ORGANIZATION
Sponsored by
DONGWOO FINE-CHEM Co., Ltd. Korea Research Institute of Chemical Technology Advanced Materials Division Sejin CI DONGJIN SEMICHEM HAEDONG SCIENCE FOUNDATION COSMAX EcoProBM Young Eng. Sci. Doosan SAMSUNG SDI S-OIL 한국도레이과학진흥재단