The nano-assembly of charged polyelectrolytes via layer-by-layer (LbL) technology on porous silicon (PSi) interferometers is here demonstrated as an effective biofunctionalization approach for high-sensitivity/selectivity labelfree optical biosensing, using streptavidin/biotin affinity detection as case study. Nanostructured PSi interferometers are biofunctionalized with a nano-assembly of a positively-charged polyelectrolyte, namely, PAH (poly(allylamine hydrochloride)), and a negatively-charged biotinylated polyelectrolyte, namely, b-PMAA (poly(methacrylic acid)), via LbL technology. The nano-assembly is stable under operating conditions and enables the selective and sensitive detection of streptavidin with a sub-picomolar detection limit...
Nanostructured porous silicon (PSi) films have been widely studied for the past two decades as optic...
Detection of target biomolecules has attracted a great deal of interest lately particularly when lab...
An electrical biosensor exploiting a nanostructured semiconductor is a promising technology for the ...
Here we report the layer-by-layer (LbL) nanoassembly of charged polyelectrolytes engineered with bio...
Nanostructured materials hold the promise to revolutionize the label-free biosensing of analytes at ...
Nanostructured materials premise to revolutionize the label-free biosensing of analytes for clinical...
Nanostructured porous silicon (PS) is a promising material for label-free optical detection of biomo...
Porous silicon (pSi) is an advanced material that has been often employed in highly sensitive optica...
Porous silicon (PSi) is a nanostructured material increasingly exploited for both refractometric and...
On-field analysis (e.g. clinical and diagnostics) of nanostructured porous silicon (PSi) for label-f...
Porous silicon (PSi) is a promising nanostructured material for label-free interferometric biosensin...
In-field analysis (e.g., clinical and diagnostics) using nanostructured porous silicon (PSi) for lab...
Porous silicon (PSi) is a nanostructured material increasingly exploited for both refractometric and...
PSi structures have unique physical and optical properties, which are being exploited for a numerous...
Nanostructured porous silicon (PS) is a promising material for label-free optical detection of biomo...
Nanostructured porous silicon (PSi) films have been widely studied for the past two decades as optic...
Detection of target biomolecules has attracted a great deal of interest lately particularly when lab...
An electrical biosensor exploiting a nanostructured semiconductor is a promising technology for the ...
Here we report the layer-by-layer (LbL) nanoassembly of charged polyelectrolytes engineered with bio...
Nanostructured materials hold the promise to revolutionize the label-free biosensing of analytes at ...
Nanostructured materials premise to revolutionize the label-free biosensing of analytes for clinical...
Nanostructured porous silicon (PS) is a promising material for label-free optical detection of biomo...
Porous silicon (pSi) is an advanced material that has been often employed in highly sensitive optica...
Porous silicon (PSi) is a nanostructured material increasingly exploited for both refractometric and...
On-field analysis (e.g. clinical and diagnostics) of nanostructured porous silicon (PSi) for label-f...
Porous silicon (PSi) is a promising nanostructured material for label-free interferometric biosensin...
In-field analysis (e.g., clinical and diagnostics) using nanostructured porous silicon (PSi) for lab...
Porous silicon (PSi) is a nanostructured material increasingly exploited for both refractometric and...
PSi structures have unique physical and optical properties, which are being exploited for a numerous...
Nanostructured porous silicon (PS) is a promising material for label-free optical detection of biomo...
Nanostructured porous silicon (PSi) films have been widely studied for the past two decades as optic...
Detection of target biomolecules has attracted a great deal of interest lately particularly when lab...
An electrical biosensor exploiting a nanostructured semiconductor is a promising technology for the ...