A hybrid silicon-poly(dimethysiloxane) (PDMS) optofluidic platform for lab-on-a-chip applications is proposed. A liquid-core waveguide with a self-aligned solid-core waveguide and a microfluidic device are integrated with a multilayer approach, resulting in a three-dimensional device assembly. The optofluidic layer was fabricated with a hybrid silicon-polymer technology, whereas the microfluidic layer was fabricated with a soft lithography technique. The combination of different materials and fabrication processes allows a modular approach, enabling both the benefits from the high optical quality achievable with silicon technology and the low cost of polymer processing. The proposed chip has been tested for fluorescence measurements on Cy5 ...
Through the efforts to fuse planar optics and microfluidics in order to produce dye lasers, biosenso...
The desideratum to develop a fully integrated Lab-on-a-chip device capable ofrapid specimen detectio...
This paper describes the development of a novel microfluidic platform for multifactorial analysis in...
Optofluidics, born of the desire to create a system containing microfluidic environments with integr...
Flexible microfluidic devices made of poly(dimethylsiloxane) (PDMS) were manufactured by soft lithog...
Within this dissertation, several optofluidic devices are presented for applications in atom-optics ...
An optical microfluidic sensor is developed on silica-on-silicon planar waveguide by using a novel s...
We report an optofluidic ring resonator (ORR) sensor based on liquid-core hybrid silicon-polymer wav...
The next major challenges for lab-on-a-chip (LoC) technology are 1) the integration of microfluidics...
This paper describes the development of a low-cost technology platform for fluorescence-based optoch...
In this paper technology to make optical waveguides and microfluidic channels integrated on the same...
This thesis examines the design and fabrication of a miniaturized optical detection system for sens...
We developed a simple method to construct liquid-core/PDMS-cladding optical waveguides through press...
The proposed technology platform allows the fabrication of disposable volume-optical measurement dev...
Abstract—A monolithic waveguide system using poly(dimethyl siloxane) (PDMS) was designed, fabricated...
Through the efforts to fuse planar optics and microfluidics in order to produce dye lasers, biosenso...
The desideratum to develop a fully integrated Lab-on-a-chip device capable ofrapid specimen detectio...
This paper describes the development of a novel microfluidic platform for multifactorial analysis in...
Optofluidics, born of the desire to create a system containing microfluidic environments with integr...
Flexible microfluidic devices made of poly(dimethylsiloxane) (PDMS) were manufactured by soft lithog...
Within this dissertation, several optofluidic devices are presented for applications in atom-optics ...
An optical microfluidic sensor is developed on silica-on-silicon planar waveguide by using a novel s...
We report an optofluidic ring resonator (ORR) sensor based on liquid-core hybrid silicon-polymer wav...
The next major challenges for lab-on-a-chip (LoC) technology are 1) the integration of microfluidics...
This paper describes the development of a low-cost technology platform for fluorescence-based optoch...
In this paper technology to make optical waveguides and microfluidic channels integrated on the same...
This thesis examines the design and fabrication of a miniaturized optical detection system for sens...
We developed a simple method to construct liquid-core/PDMS-cladding optical waveguides through press...
The proposed technology platform allows the fabrication of disposable volume-optical measurement dev...
Abstract—A monolithic waveguide system using poly(dimethyl siloxane) (PDMS) was designed, fabricated...
Through the efforts to fuse planar optics and microfluidics in order to produce dye lasers, biosenso...
The desideratum to develop a fully integrated Lab-on-a-chip device capable ofrapid specimen detectio...
This paper describes the development of a novel microfluidic platform for multifactorial analysis in...