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Noble-metal alloys are widely used as heterogeneous catalysts. However, due to the existence of scaling properties of adsorption energies on transition metal surfaces, the enhancement of catalytic activity is frequently accompanied by side reactions leading to a reduction in selectivity for the target product. Herein, we describe an approach to breaking the scaling relationship for propane dehydrogenation, an industrially important reaction, by assembling single atom alloys (SAAs), to achieve simultaneous enhancement of propylene selectivity and propane conversion. We synthesize γ-alumina-supported platinum/copper SAA catalysts by incipient wetness co-impregnation method with a high copper to platinum ratio. Single platinum atoms dispersed on copper nanoparticles dramatically enhance the desorption of surface-bounded propylene and prohibit its further dehydrogenation, resulting in high propylene selectivity (~90%). Unlike previous reported SAA applications at low temperatures (<400 °C), Pt/Cu SAA shows excellent stability of more than 120 h of operation under atmospheric pressure at 520 °C.
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Guodong Sun
Fujian Normal University
Zhi‐Jian Zhao
Tianjin University
Rentao Mu
Dalian Institute of Chemical Physics
SHILAP Revista de lepidopterología
Nature Communications
Purdue University West Lafayette
Argonne National Laboratory
Oak Ridge National Laboratory
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Sun et al. (Mon,) studied this question.
synapsesocial.com/papers/69f609fa802deed698afceef — DOI: https://doi.org/10.1038/s41467-018-06967-8
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