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in-situ BCDI studies of High entropy alloy nanoparticles under operando condition

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ESRF Portal2027-01-01 更新2026-04-23 收录
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https://doi.esrf.fr/10.15151/ESRF-ES-1719221390
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Ammonia has been demonstrated to be a promising liquid fuel for hydrogen storage. High entropy alloy (HEA) nanoparticles have become the spotlight of ammonia decomposition catalysts. Compared to the classic Ru catalyst, HEAs with earth-abundant elements significantly reduce the manufactural cost and have demonstrated higher catalytic efficiency. As heterogeneous catalysts, the reaction occurs at the solid-gas interface. The surface strain of catalysts plays an important role in the catalytic activities. We propose to visualize HEA nanoparticles' 3D surface strain evolution under operando conditions with the Bragg Coherent Diffractive Imaging method. A series of CoxMoy HEA catalysts will be studied at a wide range of temperatures, from the onset of the catalytic reaction to full efficiency, with the classic Ru catalyst as a benchmark. The outcome will provide an insightful understanding of the direct impact of the surface strain evolute on the catalytic activity and efficiency.
提供机构:
Sogang University,Physics,Mapo-gu 35 Baekbeom-ro,Ricci Hall 1006,121-742 SEOUL,121-742,SEOUL,KOREA; Brookhaven National Laboratory,Survey&Alignment,Collider-Accelerator Department,Building 923 Upton,11973 NEW YORK,11973,NEW YORK,USA; University College London,WC1E 6BT LONDON,UNITED KINGDOM,WC1E 6BT,LONDON,UNITED KINGDOM; Argonne National Laboratory,Advanced Photon Source,Building 438,9700 South Cass Avenue IL,60439 ARGONNE,60439 ,ARGONNE,USA; University of Oxford,Department of Engineering Science,Parks Road,Oxon,OX1 3PJ OXFORD,OX1 3PJ,OXFORD,UNITED KINGDOM; Argonne National Laboratory,X-Ray Science Division,9700 S.Cass Avenue,B109,60439 LEMONT,60439,LEMONT,USA
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2027-01-01
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