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Field
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), we work in a dynamic and international team of over one hundred materials scientists, chemists, physicists, mechanical engineers and technical staff on the development of advanced energy converters and
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excitations, such as quantum spin ice and spin liquids. These phenomena are explored through the identification of suitable materials and the use of physical property measurements and scattering techniques
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for reinforced, additively manufactured concrete and other mineral materials. The professorship operates an advanced extrusion-3D concrete printing facility, and as part of the laboratory for structural
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You will work in a highly interdisciplinary research environment, with access to world-class nanofabrication and characterization infrastructure. For deeper insights, please have a look at our
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approaches for studying laser-induced material dynamics over a broad temporal range. One part of the project focuses on field-resolved and phase-sensitive measurements for investigating sub-cycle electron and
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staff position within a Research Infrastructure? No Offer Description Work group: HIPOLE: Helmholtz-Institute for Polymers in Energy Applications Jena (HI-POLE) Area of research: PHD Thesis Job
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Age techniques—such as the heat treatment of lithic raw materials, the production of adhesives, or the intentional modification of pigments. For this purpose, study participants will be provided with
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lower level of technological maturity. Conventional cell concepts rely on ceramic support structures, which provide numerous advantages but also present drawbacks, particularly regarding their thermo
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of electron-transparent TEM lamellae and specimens Operation and optimization of ultrafast laser systems (fs–ps range) and optical setups Characterization of electrostatic potentials and excited carrier
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order to optimise catalyst inks and functional coatings for future energy applications more quickly and effectively. Such inks and coatings form a crucial basis for high-performance fuel cells and