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Field
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instrumentation is highly desirable Experience with detector systems, motion systems, and experimental hardware is advantageous Knowledge of catalysis, energy materials, or hydrogen technologies is beneficial but
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existing and new computational methods to study multiscale processes in catalysis and photochemistry. Other projects that align with our general interest are also possible. Please see https://sdonglab.org
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spans computational materials design, catalysis, energy materials, machine learning, and artificial intelligence. We offer a collaborative and international research environment with close interactions
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excellent problem-solving and technical skills. Prior experience in electrochemistry and/or catalysis is a strong advantage. The successful candidate will be expected to work independently in the lab while
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recycling, etc). Engineering and operation of various types of plasmas at atmospheric pressure (or slightly above), mainly warm plasmas (microwave, gliding arc, arc), but also DBD (for plasma catalysis
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. The project aims to provide new strategies for achieving "precious metal-like" redox catalysis using main group elements, and is driven by both sustainability concerns and fundamental academic curiosity. Other
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(B): Experience in protein engineering/ directed evolution, biocatalysis and/or enzymology. Area (C ): organic chemistry, catalysis, methodology development. The ideal candidates should have a PhD
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bonding, defects, catalysis, batteries, solid-state chemistry, molecular systems, or related materials classes. Strong Python skills and familiarity with LLM APIs, agent frameworks , PyTorch, and the Python
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Fuels from Carbon Dioxide Using Integrated Green Technologies), an innovation-oriented EU project led by dr. Shiju Raveendran at the The Catalysis Engineering Group, UvA Van 't Hoff Institute
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with world leaders in catalysis and electrochemistry through national laboratory consortia of the Department of Energy’s Office of Critical Minerals and Energy Innovation (CMEI). Your role will be