A new approach for the preparation of a biochip on porous silicon and the application of the biochip for detection of small molecule-protein interactions with desorption/ionization on porous silicon (DIOS) was demonstrated. The galvanostatically etched porous silicon substrates were chemically modified firstly to yield carboxylic acid terminated surfaces, and then the protein was covalently attached to the surface through amide bonding. By applying a solution of candidate chemicals to the surface and a subsequent wash step, the masses of captured compounds could be analyzed by DIOS. DIOS has advantages of being a direct detection tool compared to the classic florescence or chemiluminescence methods, because the process of labeling molecules...
Nano-porous silicon (PS) offers a potential platform for biosensors with benefits both in terms of l...
In this work, porous silicon (PS) films with varied porosity (68–82%) were formed on the p-type, bor...
A porous silicon biosensor based on P450 enzyme for arachidonic acid detection was developed. A new ...
Abstract Background We describe a biosensor platform for monitoring molecular interactions that is b...
A new method is described to attach biological molecules to the surface of silicon. Semiconductors s...
This dissertation will focus on harnessing the optical properties of porous silicon to sense proteas...
Uniformly porous silicon substrate with large surface area(12 mm. 58 mm) was prepared by simple doub...
A photochemical functionalization process which passivates the porous silicon surface of optical bio...
We present a strategy for label-free biosensing using porous silicon diffraction gratings. The grati...
International audienceWe study the effect of different surface functionalization methods on the sens...
Desorption/ionization on porous silicon surface (DIOS) is a novel matrix-free method for the analysi...
We have fabricated a microarray of porous silicon Bragg reflectors on a crystalline silicon substrat...
One attractive method for monitoring biomolecular interactions in a highly parallel fashion is the u...
Silicon is an ideal substrate for the development of micro and nano bio-molecular sensor devices; th...
Porous silicon biosensors are by far used in optical monitoring of molecular interactions. These pho...
Nano-porous silicon (PS) offers a potential platform for biosensors with benefits both in terms of l...
In this work, porous silicon (PS) films with varied porosity (68–82%) were formed on the p-type, bor...
A porous silicon biosensor based on P450 enzyme for arachidonic acid detection was developed. A new ...
Abstract Background We describe a biosensor platform for monitoring molecular interactions that is b...
A new method is described to attach biological molecules to the surface of silicon. Semiconductors s...
This dissertation will focus on harnessing the optical properties of porous silicon to sense proteas...
Uniformly porous silicon substrate with large surface area(12 mm. 58 mm) was prepared by simple doub...
A photochemical functionalization process which passivates the porous silicon surface of optical bio...
We present a strategy for label-free biosensing using porous silicon diffraction gratings. The grati...
International audienceWe study the effect of different surface functionalization methods on the sens...
Desorption/ionization on porous silicon surface (DIOS) is a novel matrix-free method for the analysi...
We have fabricated a microarray of porous silicon Bragg reflectors on a crystalline silicon substrat...
One attractive method for monitoring biomolecular interactions in a highly parallel fashion is the u...
Silicon is an ideal substrate for the development of micro and nano bio-molecular sensor devices; th...
Porous silicon biosensors are by far used in optical monitoring of molecular interactions. These pho...
Nano-porous silicon (PS) offers a potential platform for biosensors with benefits both in terms of l...
In this work, porous silicon (PS) films with varied porosity (68–82%) were formed on the p-type, bor...
A porous silicon biosensor based on P450 enzyme for arachidonic acid detection was developed. A new ...