This paper describes a new multiplexed label-free biosensor. The detection technology is based on nanostructured gold-polymer surfaces. These surfaces support surface plasmon resonance modes that can be probed by a miniaturized optical setup. The optical characterization of the sensing chip shows the sensitivity and the limit-of-detection to refractive index changes. Moreover, by studying the progressive adhesion of molecular monolayers of polyelectrolytes, the decay of the plasmonic mode electric field above the surface has been reconstructed. A multiplexed label-free biosensing device is then described and characterized in terms of sensitivity, lateral resolution, and sensitivity to a model biological assay. The sensitivity in imaging mod...
A novel optical biosensor based on simultaneous multiwave length detection surface plasmon resonance...
Abstract: A label-free localized surface plasmon resonance (LSPR)-based biosensor exploiting gold na...
[Introduction]: Optical biosensors, particularly those based on nanoplasmonics technology, have emer...
The development of a new surface plasmon resonance (SPR) imaging biosensor is reported. The biosenso...
The development of a new surface plasmon resonance (SPR) imaging biosensor is reported. The biosenso...
The development of a new surface plasmon resonance (SPR) imaging biosensor is reported. The biosenso...
A novel and sensitive multi-throughput localized surface plasmon resonance (MLSPR) biosensor was dev...
Introduction: Optical biosensors, particularly those based on nanoplasmonics technology, have emerge...
In a specific biosensing application, a nanoplasmonic sensor chip has been tested by an experimental...
The dependence of the localized surface plasmon resonance (LSPR) of noble-metal nanomaterials on ref...
This work investigated optical sensor platforms for protein multiplexing, the ability to analyze mul...
We present a simple and robust scheme for biosensing with an ultralow limit-of-detection down to sev...
In this study, a multiplex detection system was proposed by integrating a localized surface plasmon ...
Combining semiconductor technology with photonics, optics, and biochemistry leads to sensors with im...
Next-generation molecular diagnostic sensing systems seek to meet the needs of high-risk patients fo...
A novel optical biosensor based on simultaneous multiwave length detection surface plasmon resonance...
Abstract: A label-free localized surface plasmon resonance (LSPR)-based biosensor exploiting gold na...
[Introduction]: Optical biosensors, particularly those based on nanoplasmonics technology, have emer...
The development of a new surface plasmon resonance (SPR) imaging biosensor is reported. The biosenso...
The development of a new surface plasmon resonance (SPR) imaging biosensor is reported. The biosenso...
The development of a new surface plasmon resonance (SPR) imaging biosensor is reported. The biosenso...
A novel and sensitive multi-throughput localized surface plasmon resonance (MLSPR) biosensor was dev...
Introduction: Optical biosensors, particularly those based on nanoplasmonics technology, have emerge...
In a specific biosensing application, a nanoplasmonic sensor chip has been tested by an experimental...
The dependence of the localized surface plasmon resonance (LSPR) of noble-metal nanomaterials on ref...
This work investigated optical sensor platforms for protein multiplexing, the ability to analyze mul...
We present a simple and robust scheme for biosensing with an ultralow limit-of-detection down to sev...
In this study, a multiplex detection system was proposed by integrating a localized surface plasmon ...
Combining semiconductor technology with photonics, optics, and biochemistry leads to sensors with im...
Next-generation molecular diagnostic sensing systems seek to meet the needs of high-risk patients fo...
A novel optical biosensor based on simultaneous multiwave length detection surface plasmon resonance...
Abstract: A label-free localized surface plasmon resonance (LSPR)-based biosensor exploiting gold na...
[Introduction]: Optical biosensors, particularly those based on nanoplasmonics technology, have emer...