Surface tension is a well-known and widespread natural phenomenon. It can be exploited to control how fluids behave on surfaces to generate, for example, self-cleaning surfaces, but it also plays an important role in modern technology, such as microfluidic chips used in biomedical analysis. Such microfluidic chips entail an extensive network of small channels and surfaces, and require only small amounts of fluids, enabling incredibly fast and accurate (medical) analyses. To get the right fluids in the right amounts at the right place at the right time on such chips is a big technological challenge, and different techniques can be used. This dissertation presents mechanowetting, a new surface-tension driven methodology that can be used to mo...
We developed a robust simulation tool that provided energetic and geometric information of droplets ...
Wetting of a liquid on a solid surface is ubiquitous in everyday life, such as morning dew on a plan...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...
Drops are constantlyand spontaneouslyproduced in nature, but varied industrial fields (such as biote...
Efficient droplet transport is critical in microassays, microfluidic devices, and a range of heat tr...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
A small insect can stand or walk on water surface, drops of mercury do not spread on a solid surface...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
A small insect can stand or walk on water surface, drops of mercury do not spread on a solid surface...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
Microfluidics is the science of processing microliters or less of fluid at a time in a channel with ...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...
We developed a robust simulation tool that provided energetic and geometric information of droplets ...
Wetting of a liquid on a solid surface is ubiquitous in everyday life, such as morning dew on a plan...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...
Drops are constantlyand spontaneouslyproduced in nature, but varied industrial fields (such as biote...
Efficient droplet transport is critical in microassays, microfluidic devices, and a range of heat tr...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
A small insect can stand or walk on water surface, drops of mercury do not spread on a solid surface...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
A small insect can stand or walk on water surface, drops of mercury do not spread on a solid surface...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
This paper reports a novel technique for droplet transportation using dynamic surface topography. Dr...
Microfluidics is the science of processing microliters or less of fluid at a time in a channel with ...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...
We developed a robust simulation tool that provided energetic and geometric information of droplets ...
Wetting of a liquid on a solid surface is ubiquitous in everyday life, such as morning dew on a plan...
Many applications in modern technology, such as self-cleaning surfaces and digital microfluidics, re...