We report our latest research results concerning the development of a platform for label-free biosensing based on overlayered Long Period Gratings (LPGs) working in transition mode. The main novelty of this work lies in a multilayer design that allows to decouple the problem of an efficient surface functionalization from that of the tuning in transition region of the cladding modes. An innovative solvent/nonsolvent strategy for the dip-coating technique was developed in order to deposit on the LPG multiple layers of transparent polymers. In particular, a primary coating of atactic polystyrene was used as high refractive index layer to tune the working point of the device in the so-called transition region. In this way, state-of-the-art-comp...
Copyright ©2014 Society of Photo-Optical Instrumentation Engineers. This paper was published in t...
Long period fiber gratings (LPFGs) have been proposed as label-free optical biosensor for a few year...
In this work, we report about an ultrasensitive fiber optic biosensor realized using a single-ended ...
We present the development of a platform for label-free biosensing based on overlayered Long Period ...
Bio-chemical sensors are expected to offer high sensitivity and specificity towards the detection of...
Long period fiber gratings have been effectively used in the field of biochemical sensing since a fe...
An optical fibre long period grating (LPG) biosensor is appealing in the detection of biomolecules b...
Long period gratings have been recently proposed as label-free optical devices for biochemical sensi...
An optical fibre long period grating (LPG), modified with a coating of silica core gold shell (SiO2:...
We present the development and simplification of label-free fiber optic biosensors based on immobili...
AbstractAn optical fibre long period grating (LPG), modified with a coating of silica core gold shel...
In this paper, we report the experimental results on the fabrication and validation of a multilayer ...
We report on the development of a multilayer coated reflection-type long period fiber grating (LPG) ...
We report on the development of a multilayer coated reflection-type long period fiber grating (LPG) ...
We report the simplification and development of biofunctionalization methodology based on one-step 1...
Copyright ©2014 Society of Photo-Optical Instrumentation Engineers. This paper was published in t...
Long period fiber gratings (LPFGs) have been proposed as label-free optical biosensor for a few year...
In this work, we report about an ultrasensitive fiber optic biosensor realized using a single-ended ...
We present the development of a platform for label-free biosensing based on overlayered Long Period ...
Bio-chemical sensors are expected to offer high sensitivity and specificity towards the detection of...
Long period fiber gratings have been effectively used in the field of biochemical sensing since a fe...
An optical fibre long period grating (LPG) biosensor is appealing in the detection of biomolecules b...
Long period gratings have been recently proposed as label-free optical devices for biochemical sensi...
An optical fibre long period grating (LPG), modified with a coating of silica core gold shell (SiO2:...
We present the development and simplification of label-free fiber optic biosensors based on immobili...
AbstractAn optical fibre long period grating (LPG), modified with a coating of silica core gold shel...
In this paper, we report the experimental results on the fabrication and validation of a multilayer ...
We report on the development of a multilayer coated reflection-type long period fiber grating (LPG) ...
We report on the development of a multilayer coated reflection-type long period fiber grating (LPG) ...
We report the simplification and development of biofunctionalization methodology based on one-step 1...
Copyright ©2014 Society of Photo-Optical Instrumentation Engineers. This paper was published in t...
Long period fiber gratings (LPFGs) have been proposed as label-free optical biosensor for a few year...
In this work, we report about an ultrasensitive fiber optic biosensor realized using a single-ended ...