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Field
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of Ga2O3 and development of related electronic devices for power applications. The aim of the work will be the study and detailed characterization of the electrical breakdown of transistors and diodes based
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electrical characterization methods). The work will be conducted within a joint collaboration project with the Taiwanese partner ITRI (Industrial Technology Research Institute). Please submit applications
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situ characterization tools available in the laboratory (X-ray diffraction, XPD, AFM, electrical and transport measurements, etc.), and also from the team’s dense collaborative network. Scientific
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interfaces between electrolyte and cathode materials. Tasks include electrolyte synthesis, detailed (electro-)chemical characterization, and advanced bulk and interfacial characterization – including muon
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patented within the Slovak Republic; EU patent pending. The main aims of the disertation thesis will be an understanding of the basic principles of the GaN vertical structures. Electrical characterization
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two electrodes. Upon application of an electric field, the PhOLED emits light via electroluminescence. In a PhOLED, the emitting layer consists of a host–guest system composed of an organic host matrix
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loss. In solid-state batteries, when the stripping current density causes lithium to be removed from the interface more quickly than it can be replenished, voids develop in the lithium at the interface
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resource recovery applications. You will combine numerical modelling in tools such as MATLAB and COMSOL with experimental work in the laboratory, where you set up and operate test rigs, characterize water
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Quantum Devices works on the electrical and optical properties of promising nanomaterials, with both fundamental and device-oriented approaches. The team is currently composed of 6 permanent researchers
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photonic systems, in particular, make it possible to harness the richness of optical dynamics to perform complex operations inspired by biological neural networks. However, current approaches face