The present work demonstrates the possibilities of using macroporous silicon as a substrate for highly sensitive protein chip applications. The formation of 3D porous silicon structures was performed by electrochemical dissolution of monocrystalline silicon. The fabricated macroporous silicon network has a rigid spongelike structure showing high uniformity and mechanical stability. The microfluidic properties of the substrates were found to be essential for a good bioassay performance. Small spot area, good spot reproducibility, and homogeneous spot profiles were demonstrated on the substrates for immobilized aRIgG. Water contact angles were measured on the porous surface and compared to that of planar silicon, silanized glass, and ordinary...
We report the fabrication and characterization of capacitive immunosensors based on electrolyte-insu...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
A thermally oxidized macroporous silicon substrate with simple electrode structure without interdigi...
To facilitate high-throughput biomarker discovery and high-density protein-chip array analyses of co...
To facilitate high-throughput biomarker discovery and high-density protein-chip array analyses of co...
One attractive method for monitoring biomolecular interactions in a highly parallel fashion is the u...
Uniformly porous silicon substrate with large surface area(12 mm. 58 mm) was prepared by simple doub...
Major efforts to develop antibody microarray technology to enable global proteome analysis to be per...
Antibody microarray is a novel technology with great promise within proteomics. Intense work is unde...
There is agrowing need for virus sensors with improved sensitivity and dynamic range, for applicatio...
Previously we reported the extreme water repellency of randomly organized macro-/nanoporous silicon ...
We have fabricated a microarray of porous silicon Bragg reflectors on a crystalline silicon substrat...
Porous silicon with immobilized recognition biomolecules is an attractive platform for many microflu...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
We report the fabrication and characterization of capacitive immunosensors based on electrolyte-insu...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
A thermally oxidized macroporous silicon substrate with simple electrode structure without interdigi...
To facilitate high-throughput biomarker discovery and high-density protein-chip array analyses of co...
To facilitate high-throughput biomarker discovery and high-density protein-chip array analyses of co...
One attractive method for monitoring biomolecular interactions in a highly parallel fashion is the u...
Uniformly porous silicon substrate with large surface area(12 mm. 58 mm) was prepared by simple doub...
Major efforts to develop antibody microarray technology to enable global proteome analysis to be per...
Antibody microarray is a novel technology with great promise within proteomics. Intense work is unde...
There is agrowing need for virus sensors with improved sensitivity and dynamic range, for applicatio...
Previously we reported the extreme water repellency of randomly organized macro-/nanoporous silicon ...
We have fabricated a microarray of porous silicon Bragg reflectors on a crystalline silicon substrat...
Porous silicon with immobilized recognition biomolecules is an attractive platform for many microflu...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
We report the fabrication and characterization of capacitive immunosensors based on electrolyte-insu...
Levels of total human kallikrein 2 (hK2), a protein involved the pathology of prostate cancer (PCa),...
A thermally oxidized macroporous silicon substrate with simple electrode structure without interdigi...