This paper presents a simple three-dimensional (3D) fabrication method based on soft lithography techniques and laminated object manufacturing. The method can create 3D structures that have undercuts with general machines for mass production and laboratory scale prototyping. The minimum layer thickness of the method is at least 4 µm and bonding strength between layers is over 330 kPa. The performance reaches conventional fabrication techniques used for two-dimensionally (2D)-designed microfluidic devices. We fabricated some 3D structures, i.e., fractal structures, spiral structures, and a channel-in-channel structure, in microfluidic channels and demonstrated 3D microfluidics. The fabrication method can be achieved with a simple black light...
Cantilevers, embedded channels, microcavities, and other high-aspect-ratio geometries requiring gaps...
Microfluidic devices currently play an important role in many biological, chemical, and engineering ...
Abstract Reconfigurable modular microfluidics presents an opportunity for flexibly constructing prot...
This paper presents a simple three-dimensional (3D) fabrication method based on soft lithography tec...
In this paper, we discuss a technique to fabricate a three-dimensional (3D) printed micropillars str...
Nanofluidic devices have typically explored a design space of patterns limited by a single nanoscale...
A new lithography technique is presented that exploits the interactions of immiscible liquids with a...
The purpose of this project is to produce a microfluidic device for mechanical cell lysis. Microflu...
Miniaturization and integration of assays, chemical synthesis, and cell culture models onto microflu...
Nanofluidic devices have typically explored a design space of patterns limited by a single nanoscale...
The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biological subs...
International audienceThe fabrication of three-dimensional (3D) microfluidic networks entirely made ...
Go with the flow: The combination of phase-mask interference lithography and microfluidic flow litho...
In this paper, a new microstereolithography apparatus is described. It is an integral process in whi...
The techniques of photolithography and vacuum coating have been investigated, primarily as a means o...
Cantilevers, embedded channels, microcavities, and other high-aspect-ratio geometries requiring gaps...
Microfluidic devices currently play an important role in many biological, chemical, and engineering ...
Abstract Reconfigurable modular microfluidics presents an opportunity for flexibly constructing prot...
This paper presents a simple three-dimensional (3D) fabrication method based on soft lithography tec...
In this paper, we discuss a technique to fabricate a three-dimensional (3D) printed micropillars str...
Nanofluidic devices have typically explored a design space of patterns limited by a single nanoscale...
A new lithography technique is presented that exploits the interactions of immiscible liquids with a...
The purpose of this project is to produce a microfluidic device for mechanical cell lysis. Microflu...
Miniaturization and integration of assays, chemical synthesis, and cell culture models onto microflu...
Nanofluidic devices have typically explored a design space of patterns limited by a single nanoscale...
The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biological subs...
International audienceThe fabrication of three-dimensional (3D) microfluidic networks entirely made ...
Go with the flow: The combination of phase-mask interference lithography and microfluidic flow litho...
In this paper, a new microstereolithography apparatus is described. It is an integral process in whi...
The techniques of photolithography and vacuum coating have been investigated, primarily as a means o...
Cantilevers, embedded channels, microcavities, and other high-aspect-ratio geometries requiring gaps...
Microfluidic devices currently play an important role in many biological, chemical, and engineering ...
Abstract Reconfigurable modular microfluidics presents an opportunity for flexibly constructing prot...