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postdoctoral researcher specializing in Li-ion cathode materials to join our research team. This position focuses on the development, synthesis, characterization, and optimization of advanced cathode materials
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to the successful execution of R&D projects. Responsibilities include providing subject matter expertise and proficient execution of laboratory experiments in the preparation and characterization of dynamical optical
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Engineering, Chemistry, Nanoscience, Sustainable Materials, or a closely related field, and ranks within the top 10% of his/her class. Strong interest in materials synthesis and characterization, colloid
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and electrochemical characterization methods that place it in an ideal position to develop innovative ideas at the crossroads of material science disciplines, a scientific culture largely developed
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characterize the physical properties of matter from both fundamental and applied perspectives, through theoretical and experimental approaches. The laboratory has strong international visibility in Soft Matter
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electrode materials, as well as expertise in electrode characterization for electrochemical synthesis. Our state-of-the-art analytical instruments help us to quickly screen and optimize electrochemical
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(tooling and fixture). Experience in friction stir spot welding experiments (tooling and fixture) Experience in advanced characterization using techniques such as EBSD, XRD, TEM, etc. Experience in material
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teaching and mentoring of lab members as needed, and otherwise contribute to overall lab operations. The applicant will be a collaborative, impact-focused problem solver who wants to be part of a dynamic
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, development, and experimental characterization of PHPs, including the definition of geometries, selection of working fluids and materials, design of experimental test rigs, and measurement of thermal
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. The following experience will strengthen your application: Experience of work in chemistry lab environment (e.g. material synthesis, material characterization, material testing and evaluation) is highly