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. The division of Electromagnetics and Nanoelectronics within the department is focused on research connected to semiconductor materials, devices and circuits, as well as electromagnetics. The research has many
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on the physical chemistry and materials science of organic semiconductors, polymer blends and composites, and develops new plastic materials for use in the fields of wearable electronics and energy technology. All
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materials science of organic semiconductors, polymer blends and composites, and develops new plastic materials for use in the fields of wearable electronics and energy technology. All research is conducted in
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will do The goal is to demonstrate semiconductor-based antenna-integrated receivers for the far-infrared region. Supervise master’s and/or PhD students to a certain extent Possibility to engage in
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What you will do The goal is to demonstrate semiconductor-based antenna-integrated receivers for the far-infrared region. Supervise master’s and/or PhD students to a certain extent Possibility to engage
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laser pulses, develop attosecond pulse sources and to study ultrafast processes in semiconductor nanostructures using electron instrumentation. The position(s) imply the development of ultra-short pulse
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engineering processing, material recycling, nuclear chemistry, theory and modelling. About the research project The project focuses on the development and synthesis of new π-conjugated organic semiconductors
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addition to the research, the applicant is expected to participate in the supervision of master's and PhD students. Qualifications Requirements A doctoral degree or an equivalent foreign degree. This eligibility requirement
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multidiciplinary research team The Giovannitti group develops next-generation polymeric organic semiconductors for electrochemical applications. We have strong expertise in the design and synthesis of tailor-made
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semiconductors for electrochemical applications. We have strong expertise in the design and synthesis of tailor-made electrode materials, as well as expertise in electrode characterization for electrochemical