We numerically demonstrated the characteristics of a functional hydrogel layer on a silicon-based grating waveguide for a simple, cost-effective refractive index (RI) biochemical sensor. The RI of the functional hydrogel layer changes when a specific biochemical interaction occurs between the hydrogel-linked receptors and injected ligand molecules. The transmission spectral profile of the grating waveguide shifts depends on the amount of RI change caused by the functional layer. Our characterization includes the effective RI change caused by the thickness, functional volume ratio, and functional strength of the hydrogel layer. The results confirm the feasibility of, and set design rules for, hydrogel-assisted silicon-based grating waveguide...
The chapter gives an overview on modern technologies utilizing optical waveguides for biological, me...
We report reflective diffraction gratings made from smart hydrogels for ultrasensitive biochemical d...
Grating coupling is now currently used in evanescent-wave biochemical sensors as a waveguide couplin...
We performed numerical analysis and design parameter optimization of a silicon-based grating wavegui...
We performed numerical analysis and design parameter optimization of a silicon-based grating wavegui...
For silicon wire based ring resonator biosensors, we investigate the simultaneous retrieval of chang...
In this work, analytical modeling and parameter evaluation of a photonic biosensor using cascaded si...
The field of chemical and biosensors based on waveguide technology is rapidly growing, with new deve...
Abstract Numerical simulations and analytical calculations are performed to support the design of gr...
in pressInternational audienceWe present a novel highly sensitive biochemical sensor based on a Brag...
in pressInternational audienceWe present a novel highly sensitive biochemical sensor based on a Brag...
Smart hydrogels are three dimensional cross linked polymers which alter their properties in presence...
Grating coupling is now currently used in evanescent-wave biochemical sensors as a waveguide couplin...
Hydrogel waveguides have found increased use for variety of applications where biocompatibility and ...
This series of study aims to develop basis techniques for optical waveguides in order to construct o...
The chapter gives an overview on modern technologies utilizing optical waveguides for biological, me...
We report reflective diffraction gratings made from smart hydrogels for ultrasensitive biochemical d...
Grating coupling is now currently used in evanescent-wave biochemical sensors as a waveguide couplin...
We performed numerical analysis and design parameter optimization of a silicon-based grating wavegui...
We performed numerical analysis and design parameter optimization of a silicon-based grating wavegui...
For silicon wire based ring resonator biosensors, we investigate the simultaneous retrieval of chang...
In this work, analytical modeling and parameter evaluation of a photonic biosensor using cascaded si...
The field of chemical and biosensors based on waveguide technology is rapidly growing, with new deve...
Abstract Numerical simulations and analytical calculations are performed to support the design of gr...
in pressInternational audienceWe present a novel highly sensitive biochemical sensor based on a Brag...
in pressInternational audienceWe present a novel highly sensitive biochemical sensor based on a Brag...
Smart hydrogels are three dimensional cross linked polymers which alter their properties in presence...
Grating coupling is now currently used in evanescent-wave biochemical sensors as a waveguide couplin...
Hydrogel waveguides have found increased use for variety of applications where biocompatibility and ...
This series of study aims to develop basis techniques for optical waveguides in order to construct o...
The chapter gives an overview on modern technologies utilizing optical waveguides for biological, me...
We report reflective diffraction gratings made from smart hydrogels for ultrasensitive biochemical d...
Grating coupling is now currently used in evanescent-wave biochemical sensors as a waveguide couplin...