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COntrol and Modelling for sOft RObots in Surgery – COMOROS
development of software with required performance and features, as well as the experimental validation of models
From elusive non-Kekulé species to bottle-able functional molecular bricks – NO-KEKULE-RULES
r stability, but also more reactive variants featuring original reactivity with perspective towards catalysis
Understanding variation in biological rhythms in tomato – RITMO
Circadian rhythms are a fundamental feature of living organisms and are maintained by a molecular oscillator
Particle Physics for Radioprotection – P2R
de Physique Nucléaire (IN2P3). The distinctive feature of the IN2P3 is networking, due to the nature of
Silicon-based polymers by catalysed dehydropolymerisations – POLCADE
ALKALINE-EARTH METAL COMPLEXES: SYNTHESIS AND IMPLEMENTATION FOR THE PRODUCTION OF NEW SILICONE MATERIALS.
Design of biosourced glycomimetics to stimulate cartilage regeneration in osteoarthritis – GAG-LIKE
fascinating ability to recapitulate biological features of natural PGs. Even for these short GAGs, their
Alkaline earth metals for C–O bond functionalisation – ALCACAT
specific molecular alkaline earth catalysts featuring varying levels of Lewis acidity will also be devised
Adaptations and convergences of the olfactory system in small insectivorous placental mammals – RHINOGRAD
evolutionary convergence often is (1) a prominent feature of adaptive radiation, (2) generates high morphological
Mechanical Control of Pore Architecture to intelligently modulate molecular capture/separation/regeneration – MeaCoPA
is their stimulus-induced flexibility, a unique feature in the field of nanoporous adsorbents with respect
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.