M/F Researcher on the Synthesis, Structural Characteristics, and Physical Properties of New Nickel Compounds
Enregistrez cette offre et organisez votre recherche
Créez un compte gratuit pour enregistrer des offres d'emploi, créer des alertes et revenir à cette liste depuis votre tableau de bord.
En continuant, vous acceptez nos Conditions d’utilisation & Politique de confidentialité.
Organisation/Company CNRS Department Institut de Chimie de la Matière Condensée de Bordeaux Research Field Chemistry Physics Technology Researcher Profile First Stage Researcher (R1) Application Deadline 21 Oct 2026
- 23:59 (UTC) Country France Type of Contract Temporary Job Status Full-time Hours Per Week 35 Offer Starting Date 1 Dec 2026 Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No
Offer Description
The recent discovery of high-pressure superconductivity in La₃Ni₂O₇-type bilayer nickelates has opened a new frontier in unconventional superconductivity research, positioning these materials alongside cuprates and iron-based superconductors as key systems for understanding high-Tc mechanisms.
This postdoctoral project addresses this challenge through a coordinated chemical substitution strategy, acting on three complementary levers: rare-earth site engineering (chemical pressure), anion chemistry (electron doping via oxygen/fluorine exchange), and aliovalent cation doping (hole doping). The successful candidate will lead the experimental synthesis effort across all three approaches, working in close interaction with the partner laboratories (Laboratoire de physique des solides & Ecole normale supérieure at Paris-Saclay, PSI & ETH-Zurich in Switzerland) of the ANR-PRCI SUNSHINE project for structural, spectroscopic, and physical-property characterization. The candidate will also carry out resistivity, magnetic susceptibility and specific heat measurements to probe for the possible occurrence of CDW, SDW or magnetic transitions and establish their doping and pressure dependence.
In a first step, the postdoctoral researcher will prepare the nickelate phases using sol-gel methods. In the second stage, annealing will be carried out in air, in O₂, at temperatures ranging from 900 to 1200 °C, or under O₂ pressure at temperatures not exceeding 900 °C. Specific equipment is available in the laboratory for this purpose, and a maximum pressure of 250 bar at T = 900 °C can be achieved. This maximum O₂ pressure increases as the temperature decreases. Substitutions of rare earth and alkaline earth ions will be carried out. Finally, based on thermogravimetric analyses and the reduction of these phases, various fluorinating agents will be used to partially substitute fluoride ions for O₂⁻ ions. Once the phases are pure, a precise structural analysis will be carried out using X-ray and neutron diffraction data. Measurements under pressure will be carried out as part of the ANR SUNCHINE consortium. PPMS and SQUID measurements characterising the electronic and magnetic properties of all these phases will be carried out, the ultimate aim being to correlate the compositions and crystal structures with the physical properties.
Created in 1995, the Bordeaux Institute of Condensed Matter Chemistry (ICMCB) focuses its research on Solid State Chemistry, Materials Science and Chemistry and Process: designing, preparing, shaping and characterizing materials in order to discover, control and optimize specific functions. The ICMCB carries out fundamental research on model materials and/or materials with potential applications.
The ICMCB is a UMR with an average of 280 agents (permanent and non-permanent), with 3 tutelles, hosted by the CNRS and in total ZRR. The position is located in a sector covered by the Protection of Scientific and Technical Potential (PSTP), and therefore requires, in accordance with the regulations, that the arrival of the agent be authorized by the competent authority of MESR.