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experience in: Electrochemical methods (e.g. voltammetry, electrochemical impedance spectroscopy) Surface characterization techniques (e.g. FTIR, SEM) Good command of English (spoken and written). Ability
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, 2D-materials handling and manipulation (graphene and hBN in particular), controlled nanoparticle deposition and characterization using surface science techniques including both AFM, SEM, and XPS. In
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Regulations, in force (https://www.fct.pt/apoios/bolsas/docs/RegulamentoBolsasFCT2019.pdf ); Regulation No. 522/2020, published in the Official Gazette, 2nd series, No. 113, of June 12 – Research Grant
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printing and/or electrospinning Develop plasma-based coatings and functional surfaces for tissue engineering scaffolds Perform surface characterization using advanced techniques (XPS, FTIR, SEM, AFM
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plasma-treated hydrogels for cancer therapy Perform material and surface characterization using advanced techniques (XPS, FTIR, SEM, AFM) Evaluate biological responses in cancer and healthy cells in
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Microscopy (SEM) studies and Atomic Force Microscopy (AFM) investigations. Bibliography: 1) M. Kowalczyk et al. Optical Materials Express 6, 2273-2282 (2016). 2) R.-N. Verrone et al. ACS Applied Nano Materials
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https://www.science.org/content/article/metal-scaffolds-turn-bacteria-live-wires . [1] Postdoctoral fellow: high resolution microscopy and immunolabeling of conductive structures in multicellular cable
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an Open-Ended Employment Contract (Contrato Sem Termo), under private law, to be entered into pursuant to subparagraph a) of paragraph 1 of Article 147 of the Labor Code and in accordance with current
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; – Experience in supervising student research clubs; – Experience in scientific fieldwork; – Knowledge of specialised software (e.g. GIS software, etc.); – Basic operation of specialised equipment (e.g. SEM
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data analysis, for example diffraction (XRD), microscopy (SEM, AFM), cryogenic measurements, or numerical/data-driven analysis from large-scale facilities. Ability and motivation to develop skills in