Figure Presented: The surface functionalization of a noble metal is crucial in a surface plasmon resonance-based biomolecular detection system because the interfacial coating must retain the activity of immobilized biomolecules while enhancing the optimal loading. We present here a one-step, room-temperature, high-speed, gas-phase plasma polymerization process for functionalizing gold substrates using siloxane as an adhesion layer and acrylic acid as a functional layer. Siloxane- and thiol-based coatings were compared for their performance as adhesion and the interfacial layer for subsequent functionalization. An in situ sequential deposition of siloxane and acrylic acid resulted in a 7-fold increase in carboxylic functionality surfacial co...
The immobilisation of biological recognition elements onto a sensor chip surface is a crucial step ...
Biomaterials are defined as materials to interact or be in contact with biological systems. This pap...
Large-scale plasmonic substrates consisting of metal–insulator nanostructures coated with a biorecog...
Surface plasmon resonance (SPR) has been widely used as a powerful analytical technique for the stud...
The nanofabrication and surface modification of a transducer based on localized surface plasmon reso...
The nanofabrication and surface modification of a transducer based on localized surface plasmon reso...
A new plasmonic biosensor was developed in a planar chip-based format by coupling the plasmonic prop...
Herein we report on a preparation and performance of stable, hydrophilic and biocompatible polymeric...
Much research has focused on the development of analytical methods to monitor a multitude of biologi...
The research interest of this study is to investigate surface immobilization strategies for proteins...
The surface science of bioassay devices is of great importance in the development of modern diagnost...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
International audienceWe report Gold/Silica biochips for low cost biosensor devices. Firstly, the st...
A surface plasmon resonance sensor array based upon a grating substrate was developed for the detect...
Sensors based on biomolecular recognition, i.e. biosensors, are very promising tools for the develop...
The immobilisation of biological recognition elements onto a sensor chip surface is a crucial step ...
Biomaterials are defined as materials to interact or be in contact with biological systems. This pap...
Large-scale plasmonic substrates consisting of metal–insulator nanostructures coated with a biorecog...
Surface plasmon resonance (SPR) has been widely used as a powerful analytical technique for the stud...
The nanofabrication and surface modification of a transducer based on localized surface plasmon reso...
The nanofabrication and surface modification of a transducer based on localized surface plasmon reso...
A new plasmonic biosensor was developed in a planar chip-based format by coupling the plasmonic prop...
Herein we report on a preparation and performance of stable, hydrophilic and biocompatible polymeric...
Much research has focused on the development of analytical methods to monitor a multitude of biologi...
The research interest of this study is to investigate surface immobilization strategies for proteins...
The surface science of bioassay devices is of great importance in the development of modern diagnost...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
International audienceWe report Gold/Silica biochips for low cost biosensor devices. Firstly, the st...
A surface plasmon resonance sensor array based upon a grating substrate was developed for the detect...
Sensors based on biomolecular recognition, i.e. biosensors, are very promising tools for the develop...
The immobilisation of biological recognition elements onto a sensor chip surface is a crucial step ...
Biomaterials are defined as materials to interact or be in contact with biological systems. This pap...
Large-scale plasmonic substrates consisting of metal–insulator nanostructures coated with a biorecog...