Multimaterial 3D printing facilitates the rapid production of complex devices with integrated materials of varying properties and functionality. Herein, multimaterial fused deposition modeling (MM-FDM) 3D printing was applied to the fabrication of low-cost passive sampler devices with integrated porous membranes. Using MM-FDM 3D printing, the device body was produced using black polylactic acid, with Poro-Lay Lay-Felt filament used for the printing of the integrated porous membranes (rubber-elastomeric polymer, porous after removal of a water-soluble poly(vinyl alcohol) component). The resulting device consisted of two interlocking circular frames, each containing the integrated membrane, which could be efficiently sealed together without t...
In the past few decades, significant advancement has been made towards the development of automated ...
In this work, the feasibility of a novel direction for microfluidics is studied by demonstrating a s...
The rapid expansion of microfluidic applications in the last decade has been curtailed by slow, labo...
Multimaterial 3D printing facilitates the rapid production of complex devices with integrated materi...
One of the largest impediments in the development of microfluidic-based smart sensing systems is the...
Additive manufacturing, or three-dimensional (3D) printing, is an accessible, quick, and user-friend...
Assembly and bonding are major obstacles in manufacturing of functionally integrated fluidic devices...
© 17CBMS-0001. Multimaterial 3D printing was used to create an integrated microfluidic device contai...
Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated...
Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
In this work, the use of fused deposition modeling (FDM) in a (bio)analytical/lab-on-a-chip research...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
In the last 5 years, additive manufacturing (three-dimensional printing) has emerged as a highly val...
International audience3D printing is attracting considerable interest for its capacity to produce pr...
In the past few decades, significant advancement has been made towards the development of automated ...
In this work, the feasibility of a novel direction for microfluidics is studied by demonstrating a s...
The rapid expansion of microfluidic applications in the last decade has been curtailed by slow, labo...
Multimaterial 3D printing facilitates the rapid production of complex devices with integrated materi...
One of the largest impediments in the development of microfluidic-based smart sensing systems is the...
Additive manufacturing, or three-dimensional (3D) printing, is an accessible, quick, and user-friend...
Assembly and bonding are major obstacles in manufacturing of functionally integrated fluidic devices...
© 17CBMS-0001. Multimaterial 3D printing was used to create an integrated microfluidic device contai...
Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated...
Multimaterial 3D printing provides a unique capability for the creation of highly complex integrated...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
In this work, the use of fused deposition modeling (FDM) in a (bio)analytical/lab-on-a-chip research...
This research paper presents an inventive technique to swiftly create microfluidic channels on disti...
In the last 5 years, additive manufacturing (three-dimensional printing) has emerged as a highly val...
International audience3D printing is attracting considerable interest for its capacity to produce pr...
In the past few decades, significant advancement has been made towards the development of automated ...
In this work, the feasibility of a novel direction for microfluidics is studied by demonstrating a s...
The rapid expansion of microfluidic applications in the last decade has been curtailed by slow, labo...