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’ team, led by Dr Hubert Schaller, as well as the Strasbourg Botanical Garden, where Frédéric Tournay is in charge of the collections. Where to apply Website https://www.unistra.fr/fr/recrutement
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Materials) group at IEMN will develop innovative bioelectronic platforms enabling the electrical interfacing and functional monitoring of neurocompetent intestinal tissues through advanced micro- and
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-granulation technique. Objective of formulation is to adjust mechanical stability and conductivity. References 1. https://www.pepr-spleen.fr/projet/projet-e-cp/ 2. Renda et al. Catal. Today 2022, 383, 31–43
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convert heat into electricity and are attracting considerable interest for sustainable energy harvesting from industrial waste heat, automotive exhaust systems, and autonomous electronic devices. Recent
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spectroscopy, the project seeks to access the complex charge susceptibility, collective excitations, and emergent many-body phenomena in programmable electronic systems. The long-term goal is to bridge
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representative tests in small-scale batteries. A multidisciplinary team is involved in the project with much excellence and expertise in the topic. An example of a recent related research can be found here: https
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fabrication of electrical circuits) and conceptual (designing experiments, and planning of future research strategies). In the lab, you will pursue the development of high-impedance and/or protected
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these heterostructures, the electronic properties are strongly affected by interactions at the interfaces between layers. Charge transfer between materials can modify the electronic density and create new electronic
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. The current state of the art [5] shows that there are efficient algorithms to factor the reduction L mod p ∈ 𝔽_p(x)[∂] of the operator L modulo p. A first task is to lift this algorithm into a p‑adic
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their electrocatalytic performance in fuel cells and electrolysers. Main goals: - Unravel the atomic-scale mechanisms of cathodic embrittlement, including the individual or combined effects of electric fields, hydride