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entail electrode preparation, cell assembly, electrochemical testing, characterization of interfaces (largely SEM and XPS, but could also include FTIR, XRD), and experimental/analysis methodology
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University This recruitment is also connected to the Wallenberg Initiative Materials Science for Sustainability (WISE, https://wise-materials.org ). WISE, funded by the Knut and Alice Wallenberg Foundation, is
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: Experience materials design and materials selection Experience in chemical reaction development Expertise in complementary methods such as ICP-MS, XRD, XPS, SEM, TEM, EDX Scripting in Matlab, Python
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in complementary methods such as ICP-MS, XRD, XPS, SEM, TEM, EDX Scripting in Matlab, Python or equivalent languages for data analysis Strong publication record in peer-reviewed journals What you will
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researchers recruited into the WISE program will be a part of the WISE Research School https://wise-materials.org/research-school/ an ambitious nationwide program of seminars, courses, research visits, and
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or burn-resistant testing demonstrated experience with conducting microstructural characterization techniques such as SEM, TEM, XRD, EDS, EBSD, FIB/SEM etc., as well as physico-mechanical characterization
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for this research. You will have access to a variety of techniques, such as patch-clamp electrophysiology, FIB-SEM volume imaging, tissue clearing (iDISCO), and/or single-cell sequencing. The postdoctoral researcher
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-SEM, TOF-SIMS, Raman spectroscopy, and optical topometry. To support you, you will have access to a team of experts, including expertise in molecular dynamics modelling. Qualifications To be eligible
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expected to: Design advanced electrode and electrolyte materials for aqueous battery applications, and employ various physical characterization techniques (OEMS, EQCMD, XRD, SEM/TEM, XPS) to investigate
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execute experimental welding trials, including parameter selection, tooling setup, and sample preparation. Perform microstructural characterization (optical microscopy, SEM/EDS, EBSD) and mechanical testing