A label-free molecular imprinted polymer (MIP) sensor was fabricated for the detection of progesterone in aqueous solutions, by polymerization inside the void spaces of colloidal crystals, which gave them photonic properties. The prepolymerization mixture was prepared from acrylic acid as the functional monomer, ethylene glycol as the cross-linker agent, ethanol as solvent, and progesterone as the imprinted template. After polymerization, the colloidal crystal was removed by acid etching and the target eluted with a solvent. Material characterization included as follows: attenuated total reflectance-Fourier-transform infrared spectroscopy, dynamic light scattering, swelling experiments, and environmental scanning electron microscopy. MIPs w...
We present an improved approach for the preparation of highly selective and homogeneous molecular ca...
Aim. Development of an easy-to-use colorimetric sensor system for fast and accurate detection of phe...
Phenolic environmental estrogen (PEE) is one of the most common endocrine disrupting chemicals whose...
The synthesis of new nanoporous materials based on molecularly imprinted polymers (MIPs) is investig...
The detection of testosterone in aqueous solutions is a difficult task due to the low concentration ...
The detection of testosterone in aqueous solutions is a difficult task due to the low concentration ...
This thesis aimed at elaborating an optical sensor to detect molecules in a biological fluid. Two st...
This paper describes the development of a novel sorbent for selective extraction of endocrine disrup...
This paper describes the development of a novel sorbent for selective extraction of endocrine disrup...
International audienceInverse opal films of molecularly imprinted polymers (MIP) were elaborated usi...
A novel colorimetric sensor for cholesterol assay was constructed by combining a molecular imprintin...
Inverse opal films of molecularly imprinted polymers (MIP) were elaborated using the colloidal cryst...
In this work, two typical fluorescent sensors were generated by exploiting molecularly imprinted pol...
Dynamic measurements of steroid hormones in vivo are critical, but steroid sensing is currently limi...
Aim. Development of an easy-to-use colorimetric sensor system for fast and accurate detection of phe...
We present an improved approach for the preparation of highly selective and homogeneous molecular ca...
Aim. Development of an easy-to-use colorimetric sensor system for fast and accurate detection of phe...
Phenolic environmental estrogen (PEE) is one of the most common endocrine disrupting chemicals whose...
The synthesis of new nanoporous materials based on molecularly imprinted polymers (MIPs) is investig...
The detection of testosterone in aqueous solutions is a difficult task due to the low concentration ...
The detection of testosterone in aqueous solutions is a difficult task due to the low concentration ...
This thesis aimed at elaborating an optical sensor to detect molecules in a biological fluid. Two st...
This paper describes the development of a novel sorbent for selective extraction of endocrine disrup...
This paper describes the development of a novel sorbent for selective extraction of endocrine disrup...
International audienceInverse opal films of molecularly imprinted polymers (MIP) were elaborated usi...
A novel colorimetric sensor for cholesterol assay was constructed by combining a molecular imprintin...
Inverse opal films of molecularly imprinted polymers (MIP) were elaborated using the colloidal cryst...
In this work, two typical fluorescent sensors were generated by exploiting molecularly imprinted pol...
Dynamic measurements of steroid hormones in vivo are critical, but steroid sensing is currently limi...
Aim. Development of an easy-to-use colorimetric sensor system for fast and accurate detection of phe...
We present an improved approach for the preparation of highly selective and homogeneous molecular ca...
Aim. Development of an easy-to-use colorimetric sensor system for fast and accurate detection of phe...
Phenolic environmental estrogen (PEE) is one of the most common endocrine disrupting chemicals whose...