L’Institut Jean Lamour (IJL) est un laboratoire de recherche fondamentale et appliquée en science et ingénierie des matériaux et des procédés qui rassemble des scientifiques de différentes disciplines. Laboratoire multi-thématique, il couvre : les matériaux, la métallurgie, les plasmas, les surfaces, les nanomatériaux et l’électronique.
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1 to 7 of 7 Results
Apr 15, 2024
Al Hokayem, Karen; Adam, Laura Marie; Ghanbaja, Jaafar; Redjaïmia, Abdelkrim; Michel, Stéphanie; Legeai, Sophie; Stein, Nicolas, 2023, "Crystallographic analysis and electron microscopy characterization of Cu7Te4 nanorods synthesized via a soft chemistry route on a Pt substrate", https://doi.org/10.12763/QEGAXU, Université de Lorraine, V2, UNF:6:DiIZdLlwgRQW0gSNV5md1A== [fileUNF]
This dataset contains crystallographic and microscopic characterization data of Cu7Te4 single crystalline nanorods, that are self-standing on a Pt substrate. The two-step synthetic protocol of these nanostructures is based on soft chemistry and electrochemistry methods, using eco...
Jan 8, 2024
Mba Ekomo, Vitalys; Bertoloni, Calogera; Villemejeanne, Benoît; Lemoine, Charly; Duwald, Romain; Billy, Emmanuel; Mendil-Jakani, Hakima; Legeai, Sophie, 2023, "Physicochemical properties and NMR characterization of propeline - precious metals systems", https://doi.org/10.12763/EGL57A, Université de Lorraine, V3, UNF:6:saE8ntylSZV/hzhE5o3Kyw== [fileUNF]
This dataset contains some physicochemical data characteristic of Propeline, a deep eutectic solvent that can be considered as an alternative to commmonly used Ethaline for electrometallurgy applications. Propeline is composed of choline chloride and propylene glycol. All data we...
Carbiolab(Université de Lorraine)
Nov 30, 2022
Le laboratoire CarBioLab, commun à l’Institut Jean Lamour (UMR 7198 CNRS - Université de Lorraine) et à la société Groupe Bordet, a pour objectif principal de développer, produire et industrialiser des charbons actifs de haute technicité sur le sol français pour deux applications...
Sep 9, 2022
Macchi, Juan, 2022, "Time-resolved dislocation density evolution during martensitic transformation tracked in situ by High-Energy XRD experiments: a study of C content and cooling rate effects", https://doi.org/10.12763/SGPFMK, Université de Lorraine, V1
The present dataset was obtained during in situ High Energy X-Ray Diffraction experiments. The aim was to investigate the effect of the C content and of the cooling rate on the dislocation density during the martensitic transformation.
Dec 8, 2021
Geandier, Guillaume; Lebel, Florimonde, 2021, "Observation in situ de l'évolution de la microstructure d'un alliage de Titane (TA6V) au cours d'un traitement thermique en microscopie confocal", https://doi.org/10.12763/FQOYLM, Université de Lorraine, V1
Observation in situ de l'évolution de la microstructure d'un alliage de Titane (TA6V) au cours d'un traitement thermique en microscopie confocal équipé d'une platine chauffante.
Nov 10, 2021
Geandier, Guillaume, 2021, "Energy dispersive data from beamline P61A (DESY) for strain/stress analysis by GFAC consortium", https://doi.org/10.12763/AXBKZ1, Université de Lorraine, V1
Energy dispersive data from DESY-P61A beamline for stress analysis. Proposals 20200376 and 20210067 submitted by GFAC consortium.
Nov 10, 2021
Geandier, Guillaume, 2021, "Energy dispersive data from beamline ID15A (ESRF) for strain/stress analysis by GFAC consortium", https://doi.org/10.12763/SMDGR1, Université de Lorraine, V1
Data from ESRF-ID15A beamline for stress analysis. Proposal IN-1003 submitted by GFAC consortium.
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