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Poster (After Call) | FZJ-2022-05297 |
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2022
Abstract: Power-to-X enables the production of valuable compounds from the CO2 via catalytic reaction for net-zero carbon economy. The understanding of the behaviors of the supported catalyst under the reaction conditions and the elucidating the associated mechanism are crucial for the rational design of high-performing catalyst materials. The understanding and atomic level information provided by aberration-corrected TEM is unparalleled, particularly for the study of catalyst nanoparticles. Post-mortem analysis can make it difficult to underpin the specifics of a catalytic reaction mechanism, without being able to observe the structures under a realistic environment. The development of specialized microelectromechanical systems (MEMS) based sample holder now allows us to contain gas near the sample at more than 1 bar pressure with precise control over heat, gas flow and gas compositions
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