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characterization, (2) electrochemistry, (3) catalysis, (4) analytical electron microscopy. The candidate will possess a creative, analytical approach to problem solving, the ability to work independently and the
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well as nanomaterial design to develop systems for catalysis. Motivated applicants with a Ph.D. in any area of chemistry will be considered. A candidate with a strong background in solution-phase synthetic preparations
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characterization, (2) electrochemistry, (3) catalysis, (4) analytical electron microscopy. The candidate will possess a creative, analytical approach to problem solving, the ability to work independently and the
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. This position is primarily aimed at examining strategies for stabilizing metal-ligand complexes relevant to catalysis on model surfaces, which will include metal and oxide surfaces. These surface science