We report the simplification and development of biofunctionalization methodology based on one-step 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide (EDC)-mediated reaction. The dual-peak long period grating (dLPG) has been demonstrated its inherent ultrahigh sensitivity to refractive index (RI), achieving 50-fold improvement in RI sensitivity over a standard LPG sensor used in low RI range. With the simple and efficient immobilization of unmodified oligonucleotides on sensor surface, dLPG-based biosensor has been used to monitor the hybridization of complementary oligonucleotides showing a detectable oligonucleotide concentration of 4 nM with the advantages of label-free, real-time, and ultrahigh sensitivity
A label-free sensor, based on the combination of silicon photonic bandgap (PBG) structures with immo...
grantor: University of TorontoThis work has demonstrated that single-stranded DNA may be a...
We present the development of a platform for label-free biosensing based on overlayered Long Period ...
We report the simplification and development of biofunctionalization methodology based on one-step 1...
We present the development and simplification of label-free fiber optic biosensors based on immobili...
Using an optical biosensor based on a dual-peak long-period fiber grating, we have demonstrated the ...
Nanometric narrowband Long Period Gratings (LPG) are investigated for the implementation of improve...
An optical fibre long period grating (LPG) biosensor is appealing in the detection of biomolecules b...
We demonstrate a high sensitivity biosensor by fine tailoring mode dispersion and sensitivity of dua...
We report our latest research results concerning the development of a platform for label-free biosen...
Long period gratings have been recently proposed as label-free optical devices for biochemical sensi...
Long-period fiber grating (LPG) sensors have been widely used as refractive index sensors due to the...
Enzyme-functionalized dual-peak long-period fiber grating (LPFG) inscribed in 80-μm-cladding B/Ge co...
An optical fibre long period grating (LPG), modified with a coating of silica core gold shell (SiO2:...
Long period fiber gratings have been effectively used in the field of biochemical sensing since a fe...
A label-free sensor, based on the combination of silicon photonic bandgap (PBG) structures with immo...
grantor: University of TorontoThis work has demonstrated that single-stranded DNA may be a...
We present the development of a platform for label-free biosensing based on overlayered Long Period ...
We report the simplification and development of biofunctionalization methodology based on one-step 1...
We present the development and simplification of label-free fiber optic biosensors based on immobili...
Using an optical biosensor based on a dual-peak long-period fiber grating, we have demonstrated the ...
Nanometric narrowband Long Period Gratings (LPG) are investigated for the implementation of improve...
An optical fibre long period grating (LPG) biosensor is appealing in the detection of biomolecules b...
We demonstrate a high sensitivity biosensor by fine tailoring mode dispersion and sensitivity of dua...
We report our latest research results concerning the development of a platform for label-free biosen...
Long period gratings have been recently proposed as label-free optical devices for biochemical sensi...
Long-period fiber grating (LPG) sensors have been widely used as refractive index sensors due to the...
Enzyme-functionalized dual-peak long-period fiber grating (LPFG) inscribed in 80-μm-cladding B/Ge co...
An optical fibre long period grating (LPG), modified with a coating of silica core gold shell (SiO2:...
Long period fiber gratings have been effectively used in the field of biochemical sensing since a fe...
A label-free sensor, based on the combination of silicon photonic bandgap (PBG) structures with immo...
grantor: University of TorontoThis work has demonstrated that single-stranded DNA may be a...
We present the development of a platform for label-free biosensing based on overlayered Long Period ...