This paper presents details of the design and fabrication of test structures specifically designed for the characterization of two distinct digital microfluidic technologies: electro-wetting on dielectric (EWOD) and surface acoustic wave (SAW). A test chip has been fabricated that includes structures with a wide range of dimensions and provides the capability to characterize enhanced droplet manipulation, as well as other integrated functions. The EWOD and SAW devices have been separately characterized first of all to determine whether integration of the technologies affects their individual performance, including device lifetime evaluation. Microfluidic functions have then been demonstrated, including combined EWOD/SAW functions. In partic...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Electrowetting on dielectric (EWOD) is known as a promising technique to manipulate liquid droplet f...
We report characterization and precise control of droplet volume for digital microfluidics under ele...
This paper presents details of the design and fabrication of test structures specifically designed f...
This paper presents details of the design and fabrication of test structures specifically designed f...
This paper details the first reported integration of two advanced digital microfluidic technologies ...
This paper presents integrated microfluidiclab-on-a-chip technology combining surface acoustic wave(...
This paper demonstrates several enhanced microfluidic functions achieved by integrating two differen...
International audienceThis paper presents a brief overview of Electro Wetting On Dielectric (EWOD) m...
This paper presents a methodology together with a characterisation system for rapidly and quantitati...
This paper presents a systematic overview on the recent works on surface acoustic wave (SAW) driven ...
This project investigates the use of surface acoustic waves (SAWs) for applications in low cost, low...
Surface acoustic waves (SAW) generated in a piezoelectric substrate may be used to manipulate micro-...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Microfluidics, the study of fluid flow at the sub-millimetre scale, is an enabling technology that o...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Electrowetting on dielectric (EWOD) is known as a promising technique to manipulate liquid droplet f...
We report characterization and precise control of droplet volume for digital microfluidics under ele...
This paper presents details of the design and fabrication of test structures specifically designed f...
This paper presents details of the design and fabrication of test structures specifically designed f...
This paper details the first reported integration of two advanced digital microfluidic technologies ...
This paper presents integrated microfluidiclab-on-a-chip technology combining surface acoustic wave(...
This paper demonstrates several enhanced microfluidic functions achieved by integrating two differen...
International audienceThis paper presents a brief overview of Electro Wetting On Dielectric (EWOD) m...
This paper presents a methodology together with a characterisation system for rapidly and quantitati...
This paper presents a systematic overview on the recent works on surface acoustic wave (SAW) driven ...
This project investigates the use of surface acoustic waves (SAWs) for applications in low cost, low...
Surface acoustic waves (SAW) generated in a piezoelectric substrate may be used to manipulate micro-...
Lab-on-a-chip microfluidic systems hold substantial promise for a wide range of diagnostic and thera...
Microfluidics, the study of fluid flow at the sub-millimetre scale, is an enabling technology that o...
In recent years, surface acoustic wave (SAW) that were generated by interlocking patterns of the int...
Electrowetting on dielectric (EWOD) is known as a promising technique to manipulate liquid droplet f...
We report characterization and precise control of droplet volume for digital microfluidics under ele...