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March 3, 2026Journal of the American Chemical Society3 citations

Highly Stable Supported Cu–Ni Dilute Alloy Catalyst for Efficient CO 2 Reforming of Methane

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LWLizhuo WangJHJiyun HongWYWenjie Yang

Key Points

  • The catalyst maintained high activity during 1200 hours of continuous operation, transforming CO2 and methane to hydrogen.
  • In-situ X-ray absorption spectra confirmed the maintenance of a dilute alloy structure, preventing sintering at high temperatures.
  • This study highlights the feasible use of copper-nickel nanoparticles for sustainable energy applications.
  • Further exploration may enable additional applications of single-atom alloys in catalysis beyond methane reforming.

Abstract

CO2 reforming of methane, also known as dry reforming of methane, offers promising prospects for the catalytic conversion of CO2 and CH4 to produce H2, but low-cost catalysts with high activity and stability in operation under severe conditions are needed. We now report such a catalyst, consisting of copper-nickel nanoparticles on a support. The catalyst operated with high activity for more than 1200 h of continuous operation in a flow reactor with a feed of CH4:CO2:N2 in a molar ratio of 1:1:1. In-situ X-ray absorption spectra show that the catalyst consisted of a dilute alloy of copper in nickel during operation, being resistant to metal sintering and the formation of carbonaceous deposits even at 700 °C. The data are consistent with the suggestion that the catalyst was a single-atom alloy and point to the possibility of a range of applications of such catalysts.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69a75ab4c6e9836116a20e1dhttps://doi.org/10.1021/jacs.5c20379
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