© 2019 by ASME. Opto-microfluidic methods have advantages for manufacturing complex shapes or structures of micro particles/hydrogels. Most of these microfluidic devices are made of polydimethylsiloxane (PDMS) by soft lithography because of its flexibility of designing and manufacturing. However, PDMS scatters ultraviolet (UV) light, which polymerizes the photocrosslinkable materials at undesirable locations and clogs the microfluidic devices. A fluorescent dye has previously been employed to absorb the scattered UV light and shift its wavelength to effectively solve this issue. However, this method is limited due to the cost of the materials (tens of dollars per microchip), the time consumed on synthesizing the fluorescent material and ver...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
Organ-on-chip and Lab-on-chip are microfluidic devices widely applied in the biomedical field. They ...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...
In the present work, a 12µm PDMS microfluidic channel are developed using an in-house designed proje...
A straightforward method for microfluidic devices fabrication using sunlight as the ultraviolet (UV)...
Microfluidic devices can process and manipulate small amounts of fluids (nanoliters), using channels...
Abstract Conventional manufacturing techniques to fabricate microfluidic chips, such as soft lithogr...
Most polymer-replica-based microfluidic devices are mainly fabricated by using standard soft-lithogr...
Rapid prototyping (RP) of microfluidic channels in liquid photopolymers using standard li-thography ...
Current lithography approaches underpinning the fabrication of microfluidic devices rely on UV expos...
Current lithography approaches underpinning the fabrication of microfluidic devices rely on UV expos...
Flexible microfluidic devices made of poly(dimethylsiloxane) (PDMS) were manufactured by soft lithog...
Microfluidics technology shows a wide variety of applications in multiple research areas. Up to now,...
For microfluidic device fabrication in the research, industry, and commercial areas, the curing and ...
A microfluidic device made of polydimethylsiloxane (PDMS) addresses key limitations in single-molecu...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
Organ-on-chip and Lab-on-chip are microfluidic devices widely applied in the biomedical field. They ...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...
In the present work, a 12µm PDMS microfluidic channel are developed using an in-house designed proje...
A straightforward method for microfluidic devices fabrication using sunlight as the ultraviolet (UV)...
Microfluidic devices can process and manipulate small amounts of fluids (nanoliters), using channels...
Abstract Conventional manufacturing techniques to fabricate microfluidic chips, such as soft lithogr...
Most polymer-replica-based microfluidic devices are mainly fabricated by using standard soft-lithogr...
Rapid prototyping (RP) of microfluidic channels in liquid photopolymers using standard li-thography ...
Current lithography approaches underpinning the fabrication of microfluidic devices rely on UV expos...
Current lithography approaches underpinning the fabrication of microfluidic devices rely on UV expos...
Flexible microfluidic devices made of poly(dimethylsiloxane) (PDMS) were manufactured by soft lithog...
Microfluidics technology shows a wide variety of applications in multiple research areas. Up to now,...
For microfluidic device fabrication in the research, industry, and commercial areas, the curing and ...
A microfluidic device made of polydimethylsiloxane (PDMS) addresses key limitations in single-molecu...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
Organ-on-chip and Lab-on-chip are microfluidic devices widely applied in the biomedical field. They ...
Functional microdevices such as micro-robotics, tissue engineering scaffolds, and lab-on-a-chip are ...