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of assessing how PVD functionalization influences battery performance, including: capacity; charge/discharge behaviour; rate capability; ionic and electronic transport; polarization and overpotential; energy
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characterization of lipid nanoparticles (LNPs) for mRNA delivery is essential. Proficiency in relevant analytical techniques: dynamic light scattering, surface charge measurement and assays for encapsulation/loading
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. Alternatively, direct ink writing of the same material can be investigated for 3D building. Investigate the concepts of mobility, charge carrier concentration, Seebeck coefficient, and thermal conductivity. The
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technology diffusion and culture. The candidate will be working under the supervision of Professor Skerdilajda Zanaj. In particular, the candidate will be in charge of: Conduct research and contributing
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, electrical measurements such as capacitance-voltage analysis are widely used to extract parameters including effective work function, flat-band voltage, effective oxide thickness, and charge or dipole