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Polymer chemistry
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PMAS
Articles
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Surface Functionalization with Carbohydrates for Antifouling Applications
2 July 2019, by ChB -
Bacterial anti-adhesion activity based on the electrochemical properties of polymethacrylates bearing ferrocenyl pendant groups
5 November 2018 -
Copolymères poly(ester)-poly(méthacrylate de tri-alkylsilyle) : synthèse et cinétique de dégradation hydrolytique
18 June 2019, by ChB -
Functionalization of surfaces - Antifouling Coating
2 July 2019, by ChB -
RAFT polymerization of tert-butyldimethylsilyl methacrylate: kinetic study and determination of rate coefficients
19 September 2018, by ChB -
BRISSET Hugues
3 June 2016 -
Polymers for Marine Antifouling Systems (PMAS)
15 January 2018, by webmasterPresentation
Since the last 30 years, our objective has been to combat biofouling which settles on materials and structures immersed in the marine environment. Our team has a keen interest in developing environmentally friendly antifouling/fouling release strategies and in demonstrating their mechanisms of action using surface and bulk analysis techniques, field tests and bioassays developed in our lab. The inhibition of biofouling colonization requires combined methodologies of material (…) -
Siloxy silylester methacrylate diblock copolymer-based coatings with tunable erosion and marine antifouling properties
24 July 2020, by ChB -
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 (…) -
Antifouling piezoelectric vibratory system
24 July 2024, by ChBAcronym: PIEZOVIB
Funding: ANR
Short Overview: The PIEZOVIB project, between the CEA, the MAPIEM and the IFREMER, fits into this context. The proposed solution uses the vibration of the measuring surface by the use of piezoelectric actuators, outside the measuring periods. The surfaces will be transparent or not depending on the type of measurement. This project is based on the conclusive experience acquired in this field for three years, between the MAPIEM laboratory of the University (…)