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Unraveling the origin of methylmercury toxin in marine ecosystems – MERTOX
Le méthylmercure est une neurotoxine naturelle formée dans les océans qui impacte la santé humaine. Nous pensons que l’exploration à l’échelle isotopique de l’interaction entre le cycle de la matière organique et celui du mercure permettra de caractériser les mécanismes qui contrôlent la formation de ce composé, et son intégration dans les écosystèmes marins de l’océan global
Universality for random nodal domains – UNIRANDOM
well as active participations to diffusion of science for larger audience. Another expected outcome of
Unifying the understanding of gas giants' atmospheres – EMERGIANT
interface between astrophysics and atmospheric science. EMERGIANT is fundamental research, driven by the
Understanding and preventing the photocatalytic cycle responsible for the occurrence of light-struck flavor in white wines and Champagnes – DeLight
The light-struck fault is now in plain light! Thanks to the De-Light project, we have elucidated the photochemical mechanisms responsible for the formation of the drop of light and proposed technical solutions that can prevent its formation while respecting the constraints linked to the viticultural processes in force.
Understand and optimize mental strategies in motor training – MentAct
current project, we intend to use methods of sport science and brain imaging to investigate the effectiveness [...] an interaction of cognitive psychology, sport science and brain imaging, we intend to gather data that
Ultrasound welding of papers and nanocelluloses – ULTRACELL
Development of a process of ultrasonic welding of papers and boards that should be able (i) toeliminate adhesive and associated food contact problems for papers and boards packaging, (ii) to tend towards single-material packaging and almost all bio-based, (iii) to reduce the environmental impact of overconsumption of energy and waste management during recycling, (iv) to facilitate the production of recycled paper by eliminating residual glue points.
Ultradispersed metal catalysts for energy applications involving hydrogen – UltraCat
Ultradispersed metal catalysts for energy applications involving hydrogen
Two-Dimensional Nanomaterial-based Metasurfaces for enhanced Plasmonic Sensing – 2DPS
Surface plasmon resonance (SPR) sensors are commonly used to monitor molecular interactions. Here we have explored 2D layers of transition metal dichalcogenides such as MoS2 or WS2, as well as magneto-optical materials to improve the sensitivity of SPR. This with the aim of providing sensors to detect smaller molecules or molecules present in very low concentrations.
Tuning foldable building blocks using sulfur – TUNIFOLD-S
Networks of regular non-covalent interactions (NCI) have been the cornerstone of the emerging science of foldamers. However, the contemporary peptidomimetic foldamer design is largely restricted to amide-type NH···O=C hydrogen bonds. The driving idea of the TUNIFOLD-S project is to integrate NH···S hydrogen bonds as design features for new foldable molecular architectures.
Triplets for quantum information: Generation, detection, study and manipulation – TriQuI
Electronique, Mécanique, Thermique et Optique - Sciences et Technologie (FEMTO-ST), Center for Nanosciences