A flexible strategy for the on-demand control of the particle enrichment and positioning in a microfluidic channel is proposed and demonstrated by the use of a locally controlled floating metal electrode attached to the channel bottom wall. The channel is subjected to an axially acting global DC electric field, but the degree of charge polarization of the floating electrode is governed largely by a local control of the voltage applied to two micron-sized control electrodes (CEs) on either side of the floating electrode (FE). This strategy allows an independent tuning of the electrokinetic phenomena engendered by the floating electrode regardless of the global electric field across the channel, thus making the method for particle manipulatio...
This Account reviews two procedures for controlling the flow of fluids in microchannels. The first p...
In this work, we demonstrate that positive net flow can be induced and controlled with relatively lo...
In this study, we proposed a high-throughput separation strategy of the binary colloid mixture by di...
Various particle manipulations including enrichment, movement, trapping, separation, and focusing by...
The ability to accurately control micro- and nano-particles in a liquid is fundamentally useful for ...
In this work, we report an effective microfluidic technique for continuous-flow trapping and localiz...
Microfluidic manipulation of particulate matters has found its applications in cell handling, virus ...
In this paper we present a novel microfluidic approach for continuous, rapid and switchable particle...
The manipulation of micro- and nano-particles in fluids is one of the challenges for biological appl...
This paper describes microfluidic networks based on glass microchannels with integrated insulated ga...
In this study, we make use of the AC field-effect flow control on induced-charge electroosmosis (ICE...
Abstract Electroosmotic flow (EOF) in a microchannel can be controlled electronically by use of an e...
Applying electrical fields is a simple and versatile method to manipulate and reconfigure optofluidi...
Using the concept of insulator-based "electrodeless" dielectrophoresis, we present a novel geometry ...
Summary Induced-charge electro-osmosis (ICEO) involves the nonlinear electro-osmotic slip flow cause...
This Account reviews two procedures for controlling the flow of fluids in microchannels. The first p...
In this work, we demonstrate that positive net flow can be induced and controlled with relatively lo...
In this study, we proposed a high-throughput separation strategy of the binary colloid mixture by di...
Various particle manipulations including enrichment, movement, trapping, separation, and focusing by...
The ability to accurately control micro- and nano-particles in a liquid is fundamentally useful for ...
In this work, we report an effective microfluidic technique for continuous-flow trapping and localiz...
Microfluidic manipulation of particulate matters has found its applications in cell handling, virus ...
In this paper we present a novel microfluidic approach for continuous, rapid and switchable particle...
The manipulation of micro- and nano-particles in fluids is one of the challenges for biological appl...
This paper describes microfluidic networks based on glass microchannels with integrated insulated ga...
In this study, we make use of the AC field-effect flow control on induced-charge electroosmosis (ICE...
Abstract Electroosmotic flow (EOF) in a microchannel can be controlled electronically by use of an e...
Applying electrical fields is a simple and versatile method to manipulate and reconfigure optofluidi...
Using the concept of insulator-based "electrodeless" dielectrophoresis, we present a novel geometry ...
Summary Induced-charge electro-osmosis (ICEO) involves the nonlinear electro-osmotic slip flow cause...
This Account reviews two procedures for controlling the flow of fluids in microchannels. The first p...
In this work, we demonstrate that positive net flow can be induced and controlled with relatively lo...
In this study, we proposed a high-throughput separation strategy of the binary colloid mixture by di...