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The Dual-Active-Site Catalysts Containing Atomically Dispersed Pr<sup>3+</sup> with Ni/CeO<sub>2</sub> for CO<sub>2</sub> Hydrogenation to Methane.


ABSTRACT: In this study, uniformly dispersed Pr3+ as an isolated atom over Ni/CeO2 catalyst (Ni-Pr/CeO2) is designed to enhance catalytic activity for CO2 methanation, achieving an impressive 87% conversion with ≈100% CH4 selectivity at 300 °C temperature. In contrast, the traditional Ni/CeO2 and NiPr/CeO2-imp catalysts exhibit poor conversion and selectivity, highlighting the proof of concept on the advantage of atomic-scale dispersion. Structural analysis via PXRD, XAS, and XPS confirms the successful incorporation of Pr3+ into the CeO2 lattice by creating defects. XPS and XAS studies further reveal a significant increase in oxygen vacancies, a key factor in enhancing catalytic performance at lower reaction temperatures. STEM-EDS analysis confirms the ultra-dispersion of Pr3+ (≈7 wt.%) over CeO2, ensuring a highly active catalyst surface. H2-TPR and CO2-TPD results suggest that the Pr3+ doping enhances the catalytic activity by decreasing the reduction temperature and increasing basic sites. Additionally, long-term stability tests demonstrate no significant loss in activity over 40 h, confirming the catalyst's robustness and recyclability. This work provides critical insights into the structure-activity relationship of Pr3+-modified Ni/CeO2 catalysts, emphasizing the role of oxygen vacancies in optimizing CO2 hydrogenation efficiency.

SUBMITTER: Choudhary N 

PROVIDER: S-EPMC12366274 | biostudies-literature | 2025 Aug

REPOSITORIES: biostudies-literature

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The Dual-Active-Site Catalysts Containing Atomically Dispersed Pr&lt;sup&gt;3+&lt;/sup&gt; with Ni/CeO&lt;sub&gt;2&lt;/sub&gt; for CO&lt;sub&gt;2&lt;/sub&gt; Hydrogenation to Methane.

Choudhary Neha N   Srivastava Navdeep N   Annadata Harshini V HV   Ghosh Biplab B   Da Costa Patrick P  

Small (Weinheim an der Bergstrasse, Germany) 20250611 32


In this study, uniformly dispersed Pr<sup>3+</sup> as an isolated atom over Ni/CeO<sub>2</sub> catalyst (Ni-Pr/CeO<sub>2</sub>) is designed to enhance catalytic activity for CO<sub>2</sub> methanation, achieving an impressive 87% conversion with ≈100% CH<sub>4</sub> selectivity at 300 °C temperature. In contrast, the traditional Ni/CeO<sub>2</sub> and NiPr/CeO<sub>2</sub>-imp catalysts exhibit poor conversion and selectivity, highlighting the proof of concept on the advantage of atomic-scale dis  ...[more]

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