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technology. The proposed PhD thesis topic: "Development of binary and ternary Sb-chalcogenide based thin film solar cells for BIPV and IPV applications" Supervisors: Tenured Full Professor Ilona Oja Acik and
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technology. The proposed PhD thesis topic: "Development of solution-processed kesterite absorbers for thin film solar cells" Supervisors: Tenured Associate Professor Marit Kauk-Kuusik and Researcher Maris
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of the oxidation of multicomponent thin films. The research task includes designing and performing time-resolved experiments of the oxidation process of thin films using synchrotron light-based techniques such as
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. Requirements Research FieldPhysics » Solid state physicsEducation LevelMaster Degree or equivalent Skills/Qualifications Desired qualifications: Experience in the field of thin film deposition on surfaces and
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mechanisms will be investigated. Work will involve testing different PCB design elements and materials under condensed water film formation and high voltage/power conditions, and post-analysis of dendrite
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this context, the doctoral student will join a team of 2 PhD students and 2 postdocs. The main task of the PhD student will be to synthesize and then characterize thin films of ferroelectric materials by
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comprises experimental research in the field of in situ studies of the oxidation of multicomponent thin films. The research task includes designing and performing time-resolved experiments of the oxidation
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comprises experimental research in the field of synthesizing multicomponent thin films by pulsed arc deposition. The research task includes deposition process development and alloy engineering, thin film
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thin films by pulsed arc deposition. The research task includes deposition process development and alloy engineering, thin film characterization by, for example, analytical electron microscopy and x-ray
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compounds nowadays addresses numerous areas of our daily life (drugs, displays, flat screen…). Self-assembling of small functional molecules is often involved to yield nanomaterials or nanometer-thin films