Liquid metal co-injected with electrolyte through a microfluidic flow-focusing orifice forms droplets with diameters and production frequencies controlled in real time by voltage. Applying voltage to the liquid metal controls the interfacial tension via a combination of electrochemistry and electrocapillarity. This simple and effective method can instantaneously tune the size of the microdroplets, which has applications in composites, catalysts, and microsystems.</p
Liquid metals based on gallium, such as eutectic gallium indium (EGaIn) and Galinstan, have been int...
In this paper, we develop a strategy to form on-demand droplets with specific pH values. The pH cont...
Integrating insulator-covered electrodes into a microfluidic flow focusing device (FFD) we demonstra...
Micro- to nanosized droplets of liquid metals, such as eutectic gallium indium (EGaIn) and Galinstan...
We demonstrate the control of droplet sizes by an ac voltage applied across microelectrodes patterne...
Microdroplets of gallium-based liquid metal alloys have enabled various applications in the fields o...
We discuss a microfluidic system in which (programmable) local electric fields originating from embe...
Monodisperse micro-sized liquid metal droplets have received considerable attention for developing f...
As an emerging multifunctional material, Gallium-based room temperature liquid metal has attracted a...
© 2019 by the authors. Gallium-based liquid metal alloys have been attracting attention from both in...
Gallium-based liquid metal alloys have been attracting attention from both industry and academia as ...
Droplet-based protocols in microfluidic devices have found numerous applications in such different a...
We integrated electrowetting into a microfluidic flow focusing device to study drop generation under...
A liquid metal based microfluidic system was proposed and demonstrated for the generation and sortin...
Motivated by the desire to analyze individual cells, the objective of this research is the design, f...
Liquid metals based on gallium, such as eutectic gallium indium (EGaIn) and Galinstan, have been int...
In this paper, we develop a strategy to form on-demand droplets with specific pH values. The pH cont...
Integrating insulator-covered electrodes into a microfluidic flow focusing device (FFD) we demonstra...
Micro- to nanosized droplets of liquid metals, such as eutectic gallium indium (EGaIn) and Galinstan...
We demonstrate the control of droplet sizes by an ac voltage applied across microelectrodes patterne...
Microdroplets of gallium-based liquid metal alloys have enabled various applications in the fields o...
We discuss a microfluidic system in which (programmable) local electric fields originating from embe...
Monodisperse micro-sized liquid metal droplets have received considerable attention for developing f...
As an emerging multifunctional material, Gallium-based room temperature liquid metal has attracted a...
© 2019 by the authors. Gallium-based liquid metal alloys have been attracting attention from both in...
Gallium-based liquid metal alloys have been attracting attention from both industry and academia as ...
Droplet-based protocols in microfluidic devices have found numerous applications in such different a...
We integrated electrowetting into a microfluidic flow focusing device to study drop generation under...
A liquid metal based microfluidic system was proposed and demonstrated for the generation and sortin...
Motivated by the desire to analyze individual cells, the objective of this research is the design, f...
Liquid metals based on gallium, such as eutectic gallium indium (EGaIn) and Galinstan, have been int...
In this paper, we develop a strategy to form on-demand droplets with specific pH values. The pH cont...
Integrating insulator-covered electrodes into a microfluidic flow focusing device (FFD) we demonstra...