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September 5, 2025Nature Communications19 citationsOpen Access

Stabilized Fe7C3 catalyst with K–Mg dual promotion for robust CO2 hydrogenation to high-value olefins

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FQFei QianMWMaolin WangZWZhangqian Wei

Key Points

  • A fe7c3-kmg catalyst achieved 41.5% CO2 conversion and 67.1% olefin selectivity over 1000 hours.
  • Incorporating K accelerates carbonization and boosts olefin selectivity, while Mg prevents oxidation.
  • Optimized conditions for reaction included 340 °C, 2 MPa, and H2/CO2 ratio of 3.
  • The findings support the design of robust iron carbide catalysts for sustainable chemical production.

Abstract

Abstract Iron carbide catalysts, particularly the Fe 7 C 3 phase, hold significant potential for efficient CO 2 hydrogenation to olefins, yet stabilizing this phase under reactive conditions remains a major challenge. Herein, we report a robust and efficient synthesis of nearly phase-pure Fe 7 C 3 catalysts derived from Prussian blue analogues, whose stability is significantly enhanced by strategically incorporating K and Mg promoters. Comprehensive characterization reveals that K accelerates the carbonization process and markedly enhances olefin selectivity, whereas Mg effectively suppresses water-induced oxidation, preserving the structural integrity of the Fe 7 C 3 phase. Under optimized reaction conditions (340 °C, 2 MPa, H 2 /CO 2 = 3), the Fe 7 C 3 -KMg catalyst achieves a high CO 2 conversion of 41.5% and an olefin selectivity of 67.1%, maintaining exceptional catalytic stability for over 1000 hours. These findings offer valuable new insights into the rational design of robust iron carbide catalysts for sustainable and efficient CO 2 conversion into high-value chemicals.

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Cite This Study

Qian et al. (2025) studied this question.

synapsesocial.com/papers/68bb3d682b87ece8dc9568dchttps://doi.org/10.1038/s41467-025-63218-3
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