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February 19, 2026Nature Communications4 citationsOpen Access

Thermal catalytic synthesis of ammonia using uranium/graphdiyne composite at mild conditions

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SXShijie XiongWWW.H. WangFWFan Wang

Key Points

  • The study aims to find a sustainable method for ammonia synthesis using a uranium/graphdiyne composite.
  • Utilized a composite material of uranium and few-layer graphdiyne (U/GDY) for catalysis.
  • Conducted synthesis of few-layer GDY in supercritical CO2.
  • Investigated the electronic interactions between uranium and graphdiyne.
  • Achieved high-efficiency ammonia production at low temperature and pressure.
  • Demonstrated optimal nitrogen activation through unique electronic interplay between uranium and GDY.
  • Established a favorable reaction pathway for ammonia synthesis.

Abstract

The sustainable synthesis on ammonia at mild thermal conditions is a pivotal goal in catalysis, yet finding efficient alternatives to the energy-intensive Haber-Bosch process remains a great challenge. Here we show that a composite material comprising uranium and few-layer graphdiyne (U/GDY) catalyzes ammonia production with high efficiency at low temperature and pressure. We synthesize few-layer GDY in supercritical CO 2 to create a stable scaffold that hosts uranium in specific valency and cluster states. Both experimental results and theoretical calculations reveal that the unique electronic interplay between the 5 f electrons of uranium and the conjugated structure of GDY optimizes the adsorption and activation of nitrogen. This synergism facilitates a favorable reaction pathway involving specific nitrogen recognition and efficient product release. Our findings demonstrate the potential of uranium-based composites in catalysis and offer a strategy for designing actinide-carbon hybrid materials in challenging chemical transformations.

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Cite This Study

Xiong et al. (2026) studied this question.

synapsesocial.com/papers/6996712d80e1323b05ec0319https://doi.org/10.1038/s41467-026-69691-8
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