Cataloged from PDF version of article.This article introduces surface textured polymer fibers as a new platform for the fabrication of affordable microfluidic devices. Fibers are produced tens of meters-long at a time and comprise 20 continuous and ordered channels (equilateral triangle grooves with side lengths as small as 30 micrometers) on their surfaces. Extreme anisotropic spreading behavior due to capillary action along the grooves of fibers is observed after surface modification with polydopamine (PDA). These flexible fibers can be fixed on any surface - independent of its material and shape - to form three-dimensional arrays, which spontaneously spread liquid on predefined paths without the need for external pumps or actuators. Surf...
Microfluidics is defined as the technology that deals with the precise control and manipulation of s...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/134243/1/adfm201601821.pdfhttp://deepbl...
This article introduces surface textured polymer fibers as a new platform for the fabrication of aff...
Microfluidics is the science of controlling low volumes of fluids in a microchannel. It is used in d...
The controlled texturing of surfaces at the micro- and nanoscales is a powerful method for tailoring...
A “sheath” fluid passing through a microfluidic channel at low Reynolds number can be directed aroun...
Microfluidic technology has provided innovative solutions to numerous problems, but the cost of desi...
The level of wetting of fiber surface with liquids is an important characteristic of fibrous materia...
Shape characteristics, which include the physical dimensions (scale), apparent morphology, surface f...
This thesis describes an approach that is particularly useful for prototyping new devices and system...
Design and fabrication of a microfluidic channel is fundamental to all microfluidic applications. Th...
International audienceBackground: fiber diameter is one of the most important morphological paramete...
We introduce Synthetic Microfluidic Paper, a novel porous material for microfluidic applications tha...
colorimetric protein assay We have provided spontaneous capillary flow calculation in grooved fibers...
Microfluidics is defined as the technology that deals with the precise control and manipulation of s...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/134243/1/adfm201601821.pdfhttp://deepbl...
This article introduces surface textured polymer fibers as a new platform for the fabrication of aff...
Microfluidics is the science of controlling low volumes of fluids in a microchannel. It is used in d...
The controlled texturing of surfaces at the micro- and nanoscales is a powerful method for tailoring...
A “sheath” fluid passing through a microfluidic channel at low Reynolds number can be directed aroun...
Microfluidic technology has provided innovative solutions to numerous problems, but the cost of desi...
The level of wetting of fiber surface with liquids is an important characteristic of fibrous materia...
Shape characteristics, which include the physical dimensions (scale), apparent morphology, surface f...
This thesis describes an approach that is particularly useful for prototyping new devices and system...
Design and fabrication of a microfluidic channel is fundamental to all microfluidic applications. Th...
International audienceBackground: fiber diameter is one of the most important morphological paramete...
We introduce Synthetic Microfluidic Paper, a novel porous material for microfluidic applications tha...
colorimetric protein assay We have provided spontaneous capillary flow calculation in grooved fibers...
Microfluidics is defined as the technology that deals with the precise control and manipulation of s...
Research done on paper based microfluidic has been escalating since 2007 as paper is because attract...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/134243/1/adfm201601821.pdfhttp://deepbl...