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Synthesis and Testing of Supported Pt-Cu Solid Solution Nanoparticle Catalysts for Propane Dehydrogenation
Published on: July 18, 2017
Solid-solution surface alloying of Cu nanocubes with platinum-group metals: pathway switching and catalyst
Hirokazu Kobayashi1, Sachie Hikino1, Akihiko Anzai2
1Research Center for Negative Emissions Technologies, Kyushu University 744 Motooka, Nishi-ku Fukuoka 819-0395 Japan kobayashi@k-nets.kyushu-u.ac.jp.
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Precise control over morphology and alloy configuration is essential for addressing complex reactions, such as the electrochemical CO2 reduction reaction (CO2RR), which proceeds through multiple intermediates and requires enhanced selectivity, activity and stability. However, achieving simultaneous regulation of these two structural features remains a formidable challenge. Here we report novel shape-controlled Cu-based solid-solution surface-alloy nanocrystals composed of Cu nanocube (NC) cores surrounded by atomically alloyed platinum-group metal shells (Cu/Cu1-x M x NCs, M = Pd, Pt, Ir, Ru) that alter CO2RR performance of Cu. In particular, surface alloying of Cu NCs with Ir switched product selectivity from C2H4 to HCOOH. Cu/Cu1-x Ir x NCs exhibited superior HCOOH activity and stability compared with a Sn catalyst, which is a well-known element for producing HCOOH. Furthermore, Ir surface alloying preserved the cubic morphology of Cu NCs, whereas pure Cu degraded into nanograins. Our findings highlight a valuable approach to controlling reaction pathways through heteroatom interfaces and to designing highly active and stable electrocatalysts.

