Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Droplet jumping by electrowetting and its application to the three-dimensional digital microfluidics

View through CrossRef
We introduce droplet jumping by electrowetting (DJE), which stretches droplets to store energy for jumping by electrowetting. The capillarity-driven droplet jumping is effective to overcome the energy barrier, where the threshold for jumping is less than 100 V. We studied the detailed jumping mechanisms with regard to the jumping height and the energy conversion and demonstrated the transport of sessile droplets to upper surfaces under diverse electrode configurations. While the droplet jumping on the superhydrophobic surface is the primary focus of our research, DJE is also found to be possible on conventional Teflon surfaces, envisioning the three-dimensional droplet-based digital microfluidics.
Title: Droplet jumping by electrowetting and its application to the three-dimensional digital microfluidics
Description:
We introduce droplet jumping by electrowetting (DJE), which stretches droplets to store energy for jumping by electrowetting.
The capillarity-driven droplet jumping is effective to overcome the energy barrier, where the threshold for jumping is less than 100 V.
We studied the detailed jumping mechanisms with regard to the jumping height and the energy conversion and demonstrated the transport of sessile droplets to upper surfaces under diverse electrode configurations.
While the droplet jumping on the superhydrophobic surface is the primary focus of our research, DJE is also found to be possible on conventional Teflon surfaces, envisioning the three-dimensional droplet-based digital microfluidics.

Related Results

Contactless electrowetting
Contactless electrowetting
Electrowetting technology, known since more than 100 years, just recently was successfully applied for the fabrication of devices such as pixels, liquid lenses and µTas (micro tota...
Controlled production of double emulsion by microfluid technique
Controlled production of double emulsion by microfluid technique
All planned inertial confinement fusion (ICF) capsule targets except machined beryllium require plastic mandrels with tight requirements on which the ablator is built. In this pape...
Influence of Working Pressure and Pressure Difference on Static Droplet Evaporation Characteristics
Influence of Working Pressure and Pressure Difference on Static Droplet Evaporation Characteristics
The function of steam separator is to remove the small droplets carried by the vapor stream and to provide qualified saturated vapor for the steam turbine in the nuclear power stat...
Lattice Boltzmann simulation of droplet dynamics in a bifurcating micro-channel
Lattice Boltzmann simulation of droplet dynamics in a bifurcating micro-channel
The droplet dynamic in a bifurcating micro-channel, as one of the basic multiphase problems, is frequently encountered in the fields of science and engineering. Due to its great re...
Heat Transfer During Consecutive Impact of Two Droplets on a Heated Substrate
Heat Transfer During Consecutive Impact of Two Droplets on a Heated Substrate
Spray cooling is an attractive solution to cool high heat flux dissipating surfaces. However, the modelling of its transport process is very challenging due to simultaneous interac...
Access Denied
Access Denied
Introduction As social-distancing mandates in response to COVID-19 restricted in-person data collection methods such as participant observation and interviews, researchers turned t...
Generation of the small tin-droplet streams with a manipulable droplet spacing via the forced velocity perturbation
Generation of the small tin-droplet streams with a manipulable droplet spacing via the forced velocity perturbation
In extreme ultraviolet (EUV) sources, small tin droplets are scattered into the tin mist/disk under the irradiation of the pulsed laser to produce the EUV light. Small droplet size...
Reversible Electrowetting of Liquid-Metal Droplet
Reversible Electrowetting of Liquid-Metal Droplet
In this paper, we study in detail the electrowetting behavior of a liquid-metal droplet (mercury) on top of a dielectric insulating layer experimentally. 74° of the contact angle c...

Back to Top