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-resolution imaging and spectroscopy of nanoparticles using advanced broad- and focused-beam transmission electron microscopy (TEM) techniques. Structure–Catalysis Relationships at the Atomic Scale Use custom
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and flow systems, with the goal of establishing clear structure–property relationships that enable efficient, stable, and reversible CO₂ capture. We are seeking a motivated candidate with a background
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. To thrive in this role, it is important that you take a structured, self-driven approach to technical work and communicate effectively within the team and with external partners. While not required, it will
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of Academic Staff at Universities (the Appointment Order) and the Ministerial Order on Job Structure for Academic Staff at Universities (in Danish). Salary and terms of employment are in accordance with
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terms of employment The employment is in accordance with the Ministerial Order on the Appointment of Academic Staff at Universities (the Appointment Order) and the Ministerial Order on Job Structure for
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complementary aspects of how electric fields and electrode-associated niches influence the structure, function, and stability of methanogenic microbial communities in bioelectrochemical reactors. Together
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) and the Ministerial Order on Job Structure for Academic Staff at Universities (in Danish). Salary and terms of employment are in accordance with the collective agreement between the Danish Confederation
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imaging and spectroscopy of nanoparticles using advanced broad- and focused-beam transmission electron microscopy (TEM) techniques. Structure–Catalysis Relationships at the Atomic Scale Use custom
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capture. The research is based on strong competences on electrochemistry, atomic scale and multi-physics modelling, autonomous materials discovery, materials processing, and structural analyses. We also
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ionic conductivity and electrochemical stability. We will employ a garnet structured ceramic, Li7La3Zr2O12 (LLZO) as the electrolyte. The fabrication of the electrolyte will be done by field assisted