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Elucidating the Role of Mo Vacancies in a Two-Dimensional Molybdenum Carbide MXene on Fischer-Tropsch Catalysis
Swiss Fed Inst Technol, Switzerland.
Univ Artois, France.
Swiss Fed Inst Technol, Switzerland.
Helmholtz Zentrum Berlin Mat & Energie, Germany.
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2026 (English)In: ACS Catalysis, E-ISSN 2155-5435Article in journal (Refereed) Epub ahead of print
Abstract [en]

Bulk molybdenum carbides catalyze the Fischer-Tropsch (FT) reaction but display low selectivity to liquid hydrocarbons. Understanding which structural features of Mo carbide-based catalysts correlate with a selectivity to C5+ products requires detailed structure-performance studies. Here, we investigate the effect of Mo vacancies (VMo) on the FT performance of the two-dimensional (2D) i-MXene Mo4/3CT x , where T x are the surface passivating groups. We show that the initially ordered VMo sites, constituting ca. one-third of all Mo sites in Mo4/3CT x , undergo clustering already at 250 degrees C under H2. Following VMo clustering, lattice carbon is released as CH4 and CO, creating carbon vacancies (VC), which also form in Mo4/3CT x under FT conditions at 330 degrees C. The presence of VC sites is associated with a high selectivity towards methane and C2-C4 alkanes and a reduced selectivity for higher, C5+, alkanes. Mo4/3CT x converts CO at a rate of ca. 60-80 mmolCO (gcat h)-1, which is comparable to that of the T x -free 2D-Mo2C and 2D-Mo2C1-x reference catalysts that only contain a Mo+2 (carbidic) electronic state. However, post-FT analysis of Mo4/3CT x shows that it contains Mo+2, Mo+4, and Mo+5 states, possibly because oxygen atoms populate the VC sites and do not block the Mo+2 active sites at the surface. Mo4/3CT x undergoes a phase transition to cubic alpha-MoC1-x at 400 degrees C under H2, which leads to a continuous deactivation under FT conditions, suggesting, more generally, that pretreatment protocols for MXenes should be carefully optimized to unlock their potential in thermal catalysis.

Place, publisher, year, edition, pages
AMER CHEMICAL SOC , 2026.
Keywords [en]
2D molybdenum carbide; i-MXene catalysts; reductive defunctionalization; carbon vacancies; molybdenum vacancies; structure-performance relationships
National Category
Inorganic Chemistry
Identifiers
URN: urn:nbn:se:liu:diva-226855DOI: 10.1021/acscatal.6c01809ISI: 001808024700001OAI: oai:DiVA.org:liu-226855DiVA, id: diva2:2093651
Note

Funding Agencies|Eidgenssische Technische Hochschule Zrich [ETH-40 19-2]; Norges Forskningsrd [296087]; NCCR Catalysis [180544]; Agence Nationale de la Recherche [ANR-22-CE05-0005]; Schweizerischer Nationalfonds zur Frderung der Wissenschaftlichen Forschung [20602118629, TMPFP2_224646]; Knut och Alice Wallenbergs Stiftelse [2023.0250]

Available from: 2026-08-19 Created: 2026-08-19 Last updated: 2026-08-19

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