Acronym : NEMO Funding: ERANET MarTERA & ANR Short Overview: In order to sustain surface and marine water quality as advocated by international directives, there is a growing need for sensors that can enable accurate and rapid in-situ quantification of Persistent Organic Pollutants (POPs). NEMO aims to develop new generation Lab-on-Chip (LoC) miniaturized sensor platforms for the quantitative determination of POPs in marine waters. The project relies on a recognition phase based on (…)
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BRISSET Hugues
Articles
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NEw biomimetic Lab-on-Chip device for marine water MOnitoring
11 September 2020, by CaB -
Smart polymers for sustainable marine antifouling coatings
25 April 2024, by ChBECO-SmartAF :
Funding: ANR
Short Overview: The ECO-SmartAF project aims to develop new sustainable and environmentally friendly marine antifouling coatings to reduce the carbon footprint of maritime transport. Our approach is to design smart coatings that combine contact activity with appropriate amphiphilic surface chemistry, both of which prevent the adhesion of marine organisms. Smart alkoxyamine-based monomers will be designed to prepare seawater and/or enzyme-responsive polymers to (…) -
Investigation of the modification of gold electrodes by electrochemical molecularly imprinted polymers as a selective layer for the trace level electroanalysis of PAH
15 November 2024, by CaB -
Influence of sharklet-inspired micropatterned polymers on spatio-temporal variations of marine biofouling
5 December 2022, by JFB -
Bioinspiration and microtopography as non-toxic strategies for marine bioadhesion control
14 December 2021, by JFB -
Molecularly imprinted polymers designed for hazardous compounds detection
17 June 2025, by CaB -
3D inkjet printing of hybrid electroactive ink based on molecularly imprinted polymers for lipopolysaccharides detection
16 September 2024, by CaB -
Development, Optimization, Biological Assays, and In Situ Field Immersion of a Transparent Piezoelectric Vibrating System for Antifouling Applications
4 February 2022, by RB -
From electrochemical molecularly imprinted polymer to sensor: feasibility study for the detection of Bisphenol A
8 June 2016, by Hugues BRISSETBeginning: October 2014
Defence: 12/07/2018 -
Innovative Dual-detection sensor for Environmental monitoring of metAL in WATER
2 February 2024, by CaBAcronym : IDEALWATER
Funding: ANR - Agence Nationale de la Recherche
Short Overview: Accurate monitoring of trace metals in water is of outmost importance for the environment preservation and for human health. Therefore, there are increasing concerns to develop novel and robust portable sensors in order to control their levels. IDEALWATER project aims to design a novel in-situ device based on fluorescence and electrochemical dual-mode detection to measure trace metal ions in natural (…)
Laboratoire MAPIEM (UR 4323)