The mixing of confined liquids is a central yet challenging operation in miniaturized devices. Microfluidic mixing is usually achieved with passive mixers that are robust but poorly flexible, or active mixers that offer dynamic control but mainly rely on electrical or mechanical transducers, which increase the fragility, cost, and complexity of the device. Here, we describe the first remote and reversible control of microfluidic mixing triggered by a light illumination simply provided by an external LED illumination device. The approach is based on the light-induced generation of water microdroplets acting as reversible stirrers of two continuous oil phase flows containing samples to be mixed. We demonstrate many cycles of reversible photoi...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
The digital microfluidics utilizes the gradient in wettability for droplet transportation. This pape...
Microfluidic devices allow the manipulation of fluids down to the micrometer scale and are receiving...
The mixing of confined liquids is a central yet challenging operation in miniaturized devices. Micro...
AbstractWe describe the first method to control, in a single microfluidic device, the generation, fu...
We describe a method to induce by light a reversible switch from a continuous two-phase laminar flow...
A light-actuated microfluidic device has been successfully fabricated to inject, move, separate, and...
Control of droplets in microfluidic environments has numerous applications ranging from analysis and...
AbstractWe describe the first method to control, in a single microfluidic device, the generation, fu...
The heating produced by a focused laser has been shown to provide a range of manipulation tools on d...
Light energy is utilized as an extensive tool for actuation of fluid flow in microfluidic devices. W...
Abstract: We demonstrate the rapid droplet mixing ability of the Light-Actuated Digital Microfluidic...
The heating produced by a focused laser has been shown to provide a range of manipulation tools on d...
The heating produced by a focused laser has been shown to provide a range of manipulation tools on d...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
The digital microfluidics utilizes the gradient in wettability for droplet transportation. This pape...
Microfluidic devices allow the manipulation of fluids down to the micrometer scale and are receiving...
The mixing of confined liquids is a central yet challenging operation in miniaturized devices. Micro...
AbstractWe describe the first method to control, in a single microfluidic device, the generation, fu...
We describe a method to induce by light a reversible switch from a continuous two-phase laminar flow...
A light-actuated microfluidic device has been successfully fabricated to inject, move, separate, and...
Control of droplets in microfluidic environments has numerous applications ranging from analysis and...
AbstractWe describe the first method to control, in a single microfluidic device, the generation, fu...
The heating produced by a focused laser has been shown to provide a range of manipulation tools on d...
Light energy is utilized as an extensive tool for actuation of fluid flow in microfluidic devices. W...
Abstract: We demonstrate the rapid droplet mixing ability of the Light-Actuated Digital Microfluidic...
The heating produced by a focused laser has been shown to provide a range of manipulation tools on d...
The heating produced by a focused laser has been shown to provide a range of manipulation tools on d...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
The digital microfluidics utilizes the gradient in wettability for droplet transportation. This pape...
Microfluidic devices allow the manipulation of fluids down to the micrometer scale and are receiving...