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such as SEM and TEM to characterize oxide particle size and distribution. Collaborate on research papers that are led by PhD GRA who is also working on project. Required Education: PhD in Welding
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) of the Portuguese Foundation for Science and Technology (FCT): https://www.fct.pt/en/financiamento/programas-de-financiamento/bolsas . Where to apply E-mail gai@upt.pt Requirements Research
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compounds. Preparation of materials with applications in biomedicine (nanocarriers). Physicochemical, structural, morphological and surface characterization of obtained materials: TGA, TEM, XRD, N2 Adsorption
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, retirement plans, and paid time off. For more information about benefits, visit https://hr.uoregon.edu/about-benefits . The University of Oregon is an equal opportunity, affirmative action institution
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) present in hBN using transmission electron microscopy (TEM). - Identification of the structural properties of point defects (nature, density) and stacking defects (number of layers, twist angle, stresses
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microscopy (TEM) and defect characterization in materials. The research conducted in Prof. Zhou’s laboratory focuses on advanced in-situ/ex-situ electron microscopy and spectroscopy, materials for quantum
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, approved by Law no. 40/2004, of August 18, in its current wording; Regulamento de Bolsas de Investigação da FCT, I. P., in force https://www.fct.pt/apoios/bolsas/docs/RegulamentoBolsasFCT2019.pdf
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, spectroscopic, and surface characterization (e.g., Raman, XPS, SEM/TEM, electrochemical methods). Execution and analysis of electrocatalytic experiments related to NRR, NO3RR, and related reactions
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(FTIR, NMR, SEM/TEM, TGA, BET, ICP-OES/MS) Hyrometallurgical processes, or solid–liquid separation Computational or theoretical chemistry will be considered an asset. Knowledge in computational modeling
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between structure and properties. More precisely, the project will stem from the recognized expertise of the CEMES laboratory in in-situ TEM nanoindentation [1] to identify key deformation mechanisms