We have used the same biomimetic receptor, a specific molecularly imprinted polymer (MIP), on two different plasmonic plastic optical fiber (POF) sensors to measure how the optical response influences the chemical response. To obtain two surface plasmon resonance (SPR) platforms, we have used two different overlayers between the core of the POF and the gold film. These overlayers, with a refractive index higher than that of the POF's core [poly(methyl methacrylate) (PMMA)], have been used to improve the performances of the plasmonic sensor. As overlayers, we have deposited a photoresist (Microposit S1813), in two different aging conditions, namely, before and after its expiry date. In this article, we have demonstrated how the alteration in...
Optical chemosensors with surface plasmon resonance (SPR) transduction are widely employed, even in ...
A performance analysis on Surface Plasmon Resonance (SPR) sensor based on D-shaped Plastic Optical F...
In this work a novel Molecularly Imprinted Polymer (MIP) able to bind PFAs (Perfluorinated Alkylated...
We have used the same biomimetic receptor, a specific molecularly imprinted polymer (MIP), on two di...
A comparative analysis of two optical fiber sensing platforms is presented. The sensors are based on...
This work presents how the altering in the photoresist (Microposit S1813) changes the performances o...
A novel Molecularly Imprinted Polymer (MIP) able to bind perfluorinated compounds, combined with a s...
A novel Molecularly Imprinted Polymer (MIP) able to bind perfluorinated compounds, combined with a s...
A novel optical chemical sensing approach is presented and successfully tested in this work. The dev...
In this work, we report the design, implementation and characterization of SPR sensors in a D-shaped...
For the detection of chemical agents in different environments, the combination of a D-shaped plasti...
For the detection of chemical agents in different environments, the combination of a D-shaped plasti...
A novel low-cost surface plasmon resonance (SPR) platform has been tested, for the first time, to mo...
A novel low-cost surface plasmon resonance (SPR) platform has been tested, for the first time, to mo...
The possibility of developing a multichannel optical chemical sensor, based on molecularly imprinted...
Optical chemosensors with surface plasmon resonance (SPR) transduction are widely employed, even in ...
A performance analysis on Surface Plasmon Resonance (SPR) sensor based on D-shaped Plastic Optical F...
In this work a novel Molecularly Imprinted Polymer (MIP) able to bind PFAs (Perfluorinated Alkylated...
We have used the same biomimetic receptor, a specific molecularly imprinted polymer (MIP), on two di...
A comparative analysis of two optical fiber sensing platforms is presented. The sensors are based on...
This work presents how the altering in the photoresist (Microposit S1813) changes the performances o...
A novel Molecularly Imprinted Polymer (MIP) able to bind perfluorinated compounds, combined with a s...
A novel Molecularly Imprinted Polymer (MIP) able to bind perfluorinated compounds, combined with a s...
A novel optical chemical sensing approach is presented and successfully tested in this work. The dev...
In this work, we report the design, implementation and characterization of SPR sensors in a D-shaped...
For the detection of chemical agents in different environments, the combination of a D-shaped plasti...
For the detection of chemical agents in different environments, the combination of a D-shaped plasti...
A novel low-cost surface plasmon resonance (SPR) platform has been tested, for the first time, to mo...
A novel low-cost surface plasmon resonance (SPR) platform has been tested, for the first time, to mo...
The possibility of developing a multichannel optical chemical sensor, based on molecularly imprinted...
Optical chemosensors with surface plasmon resonance (SPR) transduction are widely employed, even in ...
A performance analysis on Surface Plasmon Resonance (SPR) sensor based on D-shaped Plastic Optical F...
In this work a novel Molecularly Imprinted Polymer (MIP) able to bind PFAs (Perfluorinated Alkylated...