For the detection of chemical agents in different environments, the combination of plastic optical fibers (POFs) and molecularly imprinted polymers (MIPs) receptors has been tested as a way to obtain low cost, highly selective and sensitive optical chemical sensors based on plasmonic resonance. In this work, a novel type of optical chemical sensor able to detect the binding reactions occurring between the MIP and analyte has been designed, fabricated and applied for the selective detection of dibenzyl disulfide (DBDS) in transformer oil. This analyte is important in the control of transformer oil, since it is responsible for the corrosive properties of the oil. The new optical sensor platform is based on two plastic optical fibers that ...
In this work an innovative, miniaturized and low cost optical chemical sensor (POF-MIP platform), ba...
In this work a novel Molecularly Imprinted Polymer (MIP) able to bind PFAs (Perfluorinated Alkylated...
The objective of this study is to present an optical chemical sensor based on surface plasmon resona...
We present a multichannel optical chemical sensor based on molecularly imprinted polymers (MIPs) and...
We present a multichannel optical chemical sensor based on molecularly imprinted polymers (MIPs) and...
The combination of a D-shaped plastic optical fiber (POF) and a Molecularly Imprinted Polymer (MIP) ...
The possibility of developing a multichannel optical chemical sensor, based on molecularly imprinted...
A novel optical chemical sensing approach is presented and successfully tested in this work. The dev...
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...
AbstractIn this work the feasibility of an optical method for an early and high sensitivity detectio...
In this work the feasibility of an optical method for an early and high sensitivity detection of che...
Optical chemosensors with surface plasmon resonance (SPR) transduction are widely employed, even in ...
In this work an innovative, miniaturized and low cost optical chemical sensor (POF-MIP platform), ba...
In this work an innovative, miniaturized and low cost optical chemical sensor (POF-MIP platform), ba...
In this work a novel Molecularly Imprinted Polymer (MIP) able to bind PFAs (Perfluorinated Alkylated...
The objective of this study is to present an optical chemical sensor based on surface plasmon resona...
We present a multichannel optical chemical sensor based on molecularly imprinted polymers (MIPs) and...
We present a multichannel optical chemical sensor based on molecularly imprinted polymers (MIPs) and...
The combination of a D-shaped plastic optical fiber (POF) and a Molecularly Imprinted Polymer (MIP) ...
The possibility of developing a multichannel optical chemical sensor, based on molecularly imprinted...
A novel optical chemical sensing approach is presented and successfully tested in this work. The dev...
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...
AbstractIn this work the feasibility of an optical method for an early and high sensitivity detectio...
In this work the feasibility of an optical method for an early and high sensitivity detection of che...
Optical chemosensors with surface plasmon resonance (SPR) transduction are widely employed, even in ...
In this work an innovative, miniaturized and low cost optical chemical sensor (POF-MIP platform), ba...
In this work an innovative, miniaturized and low cost optical chemical sensor (POF-MIP platform), ba...
In this work a novel Molecularly Imprinted Polymer (MIP) able to bind PFAs (Perfluorinated Alkylated...
The objective of this study is to present an optical chemical sensor based on surface plasmon resona...