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structure-materials property relationship, x) Dynamic covalent bonds, xi) Nanomaterials and nanocomposites, xii) nanomaterials' analysis (e.g. Raman, TEM, SEM, X-Ray). The postdoc’s duties will include
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such as galvanostatic charge/discharge, cyclic voltammetry, electrochemical impedance spectroscopy Hands-on experience of using characterisation techniques such as XRD, SEM, TEM, etc. to characterise
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to characterize them. Soft material structural determination will be performed using a state-of-the-art TFS Spectra 300C TEM, a microscope specialized for a multifaceted cryogenic workflow. The Spectra is equipped
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, such as electrochemical impedance spectroscopy, with for instance nuclear magnetic resonance spectroscopy (NMR), electron microscopy (SEM/TEM), Raman and in situ mass spectrometry (OLMS). Qualifications
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electrical circuits - Ability to analyze data and interpret XPS spectra, XRD patterns, EDX data, and TEM images - Ability to operate solar simulators and systems for measuring wavelength-dependent quantum
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photocathodes for long-term hydrogen production, thermoelectric modules for solar waste heat harvesting, or perovskite-silicon devices for light-driven chemical synthesis. For more details, please view https
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this is a permanent contract, the activities described above are expected to be completed by August 31, 2027. Where to apply Website https://sede.udc.gal/services/electronic_board/EXP2026/007070
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of MOF-guest interactions, advanced characterization of MOF materials using techniques such as PXRD, Raman and infrared spectroscopy, UV-vis spectroscopy, XPS, SEM, and TEM, environmental impact assessment
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be characterized by microscopy techniques such as TEM, SEM, and AFM, and spectroscopic methods such as XPS, UPS, EELS, and EDX. Close cooperation with Doctoral Candidate 2 (DC2) will be expected
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of carbonaceous, composite covalent anode materials in SIBs, and multifunctional ion-conductive polymers in rechargeable aqueous ZIBs, is expected. Operando experiments will be compared with ex-situ TEM analysis