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, please contact patrick.lacroix-desmazes@umontpellier.fr and cecile.bouilhac@umontpellier.fr Context: Controlled management of strategic metal resources in lithium-ion batteries (LIB) has become a pressing
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to populations and infrastructure. While heavy rainfall is well recognized as a triggering factor, recent studies have revealed the importance of snow cover and, in particular, rapid melting dynamics in
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, which allows for a preferred writing of elements and strong algorithmic properties, is very useful, but only few examples are known. Thomas Haettel (with Jingyin Huang, Duke Math. Journal, 2024) recently
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to develop chiral metal nanoclusters, understand their chirality at the atomic level through a combination of advanced spectroscopic techniques and theoretical simulations, and apply them to relevant processes
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metal in the space between the NDs) or networks of 2D metal pads formed on the domains. Our team has good experience in the formation of hybrid nano-objects (organo-metallic) on the surface of water by
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candidate will join the SIGNAL team under the supervision of Dr. Yoan Coudert. Research topic : The recruited postdoc will investigate the genetic mechanisms underlying the pre-patterning and development at a
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heat pump systems. The thermodynamic innovation of the project is based on the use of a fluid capable of undergoing a chemical dimerisation reaction, allowing a chemical energy component to be integrated
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the majority of polluting ionic species, as well as toxic heavy metal ions (Pb2+). The multiplexed detection system proposed for the study is based on the cointegration of several sensors that are selectively
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-individual differences through a comparative approach in order to identify key, fundamental elements that are conserved or converge during evolution. To this end, we specifically intend to study the strategies
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to develop chiral metal nanoclusters, understand their chirality at the atomic level through a combination of advanced spectroscopic techniques and theoretical simulations, and apply them to relevant processes