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-paracrystalline (SPC) microstructure and the nanomorphology of donor-acceptor (BHJ) blends using techniques such as GISAXS and transmission electron microscopy (TEM) (Task 3.1). • Evaluation of the degradation and
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of donor-acceptor (BHJ) blends using techniques such as GISAXS and transmission electron microscopy (TEM) (Task 3.1). • Evaluation of the degradation and aging of simple OSC devices, correlating the temporal
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techniques such as scanning electron microscopy (SEM), Transmission electron microscopy (TEM) and X-ray diffraction (XRD) to study the materials at the microscale and nanoscale) as well as access to National
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the form of coatings, ablation and high-heat-flux testing rigs, and characterisation using secondary electron imaging, X-ray diffractometry, electron backscattered diffraction, transmission electron
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diffractometry, electron backscattered diffraction, transmission electron microscopy, and Raman spectroscopy. This is a hugely exciting project for an enthusiastic researcher who wishes to forge an academic
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geological materials and organics; knowledge of spectroscopy and/or scanning and/or transmission electron microscopy techniques. Merits are: experience in spectral data analysis using Matlab, R or Python; a
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, pharmacovigilance, and Good Clinical Practice (GCP). In our basic research infrastructure, we operate several core units that ensure top performance in methodologies such as structural analysis, electron and
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State Physics Electron Microscopy Semiconductor Epitaxy Semiconductor Optics Surface Physics 3. Theoretical Physics Complex Systems Solid-State Theory Semiconductor Physics Theoretical Bio- and
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PhD course modules with a minimum of one module in each of the three categories: Technical modules (nanotechnology laboratory; laser laboratory work; advanced light microscopy in biological science