The manipulation of small amounts of liquids has applications ranging from biomedical devices to liquid transfer. Direct light-driven manipulation of liquids, especially when triggered by light-induced capillary forces, is of particular interest because light can provide contactless spatial and temporal control. However, existing light-driven technologies suffer from an inherent limitation in that liquid motion is strongly resisted by the effect of contact-line pinning. Here we report a strategy to manipulate fluid slugs by photo-induced asymmetric deformation of tubular microactuators, which induces capillary forces for liquid propulsion. Microactuators with various shapes (straight, 'Y'-shaped, serpentine and helical) are fabric...
As lab-on-a-chip devices aim to incorporate complex and multi-step microfluidic workflows, active fl...
Light responsive liquid crystalline networks were prepared by photopolymerization of azobenzene-dope...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
Despite spectacular progress in microfluidics, small-scale liquid manipulation, with few exceptions,...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
Polymeric microactuators are potentially useful in micromechanical systems and lab-on-a-chip systems...
A light-actuated microfluidic device has been successfully fabricated to inject, move, separate, and...
Polymeric microactuators are potentially useful in micromechanical systems and lab-on-a-chip systems...
Polymeric microactuators are potentially useful in micromechanical systems and lab-on-a-chip systems...
As lab-on-a-chip devices aim to incorporate complex and multi-step microfluidic workflows, active fl...
Light responsive liquid crystalline networks were prepared by photopolymerization of azobenzene-dope...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...
Despite spectacular progress in microfluidics, small-scale liquid manipulation, with few exceptions,...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
In nature, capillary forces are often driving microfluidic propulsion and droplet manipulation, and ...
Polymeric microactuators are potentially useful in micromechanical systems and lab-on-a-chip systems...
A light-actuated microfluidic device has been successfully fabricated to inject, move, separate, and...
Polymeric microactuators are potentially useful in micromechanical systems and lab-on-a-chip systems...
Polymeric microactuators are potentially useful in micromechanical systems and lab-on-a-chip systems...
As lab-on-a-chip devices aim to incorporate complex and multi-step microfluidic workflows, active fl...
Light responsive liquid crystalline networks were prepared by photopolymerization of azobenzene-dope...
The development of microfluidic devices is still hindered by the lack of robust fundamental building...