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facilities and advanced physico-chemical and electrochemical characterization platforms. - PolyMAT (University of the Basque Country, Spain) – Partner in charge of the development of Na-based ionic liquids and
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Perpignan, and will then continue at the LaTEP laboratory in Pau. Doctoral school: ED 305 – Doctoral School of Energy and Environment at UPVD (University of Perpignan Via Domitia). Context In the current
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Megagauss magnetic fields by means of quasi-optical conductivity measurements in the GHz range and THz spectroscopy. The successful candidate will contribute to the development of novel GHz and THz
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of BN-based heterostructures by MOVPE and will also perform advanced characterization of the materials (XRD, AFM, SEM, PL, CL, and electrical measurements). Where to apply Website https://emploi.cnrs.fr
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. Today, the recycling and reuse of battery components at the end of their life cycle is a responsible and essential approach, and one that needs to be explored in order to meet current challenges
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, their manipulation with magnetic and electric fields, and the generation of spin and orbital electronic currents for spin–orbit torques in solid-state devices made of light metals, metallic ferromagnets and/or
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used synthetic refrigerants. Methodological approach: 1. State of the art on working fluids and the regulatory framework. An in-depth literature review will be conducted to identify current and emerging
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the laboratory's cryostats. Main tasks: • Fabrication of a graphene sample encapsulated in hBN (hexagonal boron nitride). • Electrical circuit fabrication using lithography techniques in a cleanroom. • Low
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. The key innovation of D-MEC is expected to increase current densities-and therefore hydrogen production capacity-by 50 up to 400 times compared to traditional MECs, thereby overcoming the main
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from the deep milling of existing pavement structures (equivalent to “full depth reclamation”). In current formulation methods, these materials are often considered as purely granular media and