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simulation approaches capable of treating systems containing millions of atomic orbitals. These methods are particularly suited to structurally disordered, amorphous and low-dimensional materials for which
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the generation of green hydrogen via solar-driven photoelectrochemical (PEC) systems. In this position, you will apply advanced electron microscopy techniques, including STEM to investigate the structure and
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electrochemistry, ferroelectricity and magnetism; magneto-ionics in patterned structures and thin films; atomic force microscopy (including magnetic force microscopy, piezo-response force microscopy, Kelvin probe
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the structure and behavior of catalytic nanomaterials critical for green hydrogen and energy technologies. The candidate will design and perform real-time in-situ TEM experiments using gas and liquid sample