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of green hydrogen via solar-driven photoelectrochemical (PEC) systems. In this postdoctoral position, you will apply advanced electron microscopy techniques, including STEM and FIB, to investigate
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. Work with model cell systems including H-cells and interdigitated electrodes to isolate specific electrolyte/EDL effects. Perform basic characterization such as XPS, XRD, SEM/EDS, FIB-SEM, TEM etc. and
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, mask design, and use of Focused Ion Beam (FIB) techniques; - Expertise in 2D materials, particularly graphene; - Strong skills in spectroscopy (Raman, instrumentation, data processing and analysis
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Fisher Scientific-Titan instruments, a dual beam FIB, an environmental SEM,... More about us at our webpage . Job description You will characterize the optical response at the single particle level in TEM
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electrochemical measurements. Work with model cell systems including H-cells and interdigitated electrodes to isolate specific electrolyte/EDL effects. Perform basic characterization such as XPS, XRD, SEM/EDS, FIB
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equipment including clean rooms, several PVD chamber systems for thin film processing, high level of materials analysis facilities such as XRDs, SEMs, FIBs, TEM, APT; as well as in-situ micromechanical
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at conferences (posters and oral presentations). Produce progress reports. The recruited person will be responsible for structural characterization experiments using FIB/SEM/TEM electron microscopy and chemical
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electron microscopes including aberration corrected, high end Thermo Fisher Scientific-Titan instruments, a dual beam FIB, an environmental SEM,... More about us at our webpage . Job description You will
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require in-situ electrical transport measurements, and complementary characterization such as the use of PPMS and MPMS. The postdoctoral candidate is expected to fabricate suitable samples using FIB and EBL
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state-of-the-art equipment including clean rooms, several PVD chamber systems for thin film processing, high level of materials analysis facilities such as XRDs, SEMs, FIBs, TEM, APT; as well as in-situ