In-situ environmental (scanning) transmission electron microscopy of catalysts at the atomic level

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Abstract

Observing reacting single atoms on the solid catalyst surfaces under controlled reaction conditions is a key goal in understanding and controlling heterogeneous catalytic reactions. In-situ real time aberration corrected environmental (scanning) transmission electron microscopy (E(S)TEM permit the direct imaging of dynamic surface and sub-surface structures of reacting catalysts. In this paper in-situ AC ETEM and AC ESTEM studies under controlled reaction environments of oxide catalysts and supported metal nanocatalysts important in chemical industry are presented. They provide the direct evidence of dynamic processes at the oxide catalyst surface at the atomic scale and single atom dynamics in catalytic reactions. The ESTEM studies of single atom dynamics in controlled reaction environments show that nanoparticles act as reservoirs of ad-atoms. The results have important implications in catalysis and nanoparticle studies. © Published under licence by IOP Publishing Ltd.

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Gai, P. L., & Boyes, E. D. (2014). In-situ environmental (scanning) transmission electron microscopy of catalysts at the atomic level. In Journal of Physics: Conference Series (Vol. 522). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/522/1/012002

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