Litcius/Paper detail

Manipulation and control of droplets on surfaces in a homogeneous electric field

Johannes Hartmann, Maximilian T. Schür, Steffen Hardt

2022Nature Communications90 citationsDOIOpen Access PDF

Abstract

A method to manipulate and control droplets on a surface is presented. The method is based on inducing electric dipoles inside the droplets using a homogeneous external electric field. It is shown that the repulsive dipole force efficiently suppresses the coalescence of droplets moving on a liquid-infused surface (LIS). Using a combination of experiments, numerical computations and semi-analytical models, the dependence of the repulsion force on the droplet volumes, the distance between the droplets and the electric field strength is revealed. The method allows to suppress coalescence in complex multi-droplet flows and is real-time adaptive. When the electric field strength exceeds a critical value, tip streaming from the droplets sets in. Based on that, it becomes possible to withdraw minute samples from an array of droplets in a parallel process.

Topics & Concepts

Coalescence (physics)Electric fieldDipoleHomogeneousMechanicsComputationMaterials sciencePhysicsChemical physicsComputer scienceStatistical physicsAstrobiologyQuantum mechanicsAlgorithmElectrowetting and Microfluidic TechnologiesElectrohydrodynamics and Fluid DynamicsInnovative Microfluidic and Catalytic Techniques Innovation