Yang Qingxin, Kondratenko Vita A, Petrov Sergey A, Doronkin Dmitry E, Saraçi Erisa, Lund Henrik, Arinchtein Aleks, Kraehnert Ralph, Skrypnik Andrey S, Matvienko Alexander A, Kondratenko Evgenii V
Leibniz-Institut für Katalyse e. V., Albert-Einstein-Str. 29a, 18059, Rostock, Germany.
Institute of Solid-State Chemistry and Mechanochemistry, Kutateladze Str. 18, 630128, Novosibirsk, Russia.
Angew Chem Int Ed Engl. 2022 May 23;61(22):e202116517. doi: 10.1002/anie.202116517. Epub 2022 Mar 31.
Alkali metal promoters have been widely employed for preparation of heterogeneous catalysts used in many industrially important reactions. However, the fundamentals of their effects are usually difficult to access. Herein, we unravel mechanistic and kinetic aspects of the role of alkali metals in CO hydrogenation over Fe-based catalysts through state-of-the-art characterization techniques, spatially resolved steady-state and transient kinetic analyses. The promoters affect electronic properties of iron in iron carbides. These carbide characteristics determine catalyst ability to activate H , CO and CO . The Allen scale electronegativity of alkali metal promoter was successfully correlated with the rates of CO hydrogenation to higher hydrocarbons and CH as well as with the rate constants of individual steps of CO or CO activation. The derived knowledge can be valuable for designing and preparing catalysts applied in other reactions where such promoters are also used.
碱金属助催化剂已被广泛用于制备许多工业上重要反应中使用的多相催化剂。然而,其作用的基本原理通常难以探究。在此,我们通过先进的表征技术、空间分辨稳态和瞬态动力学分析,揭示了碱金属在铁基催化剂上CO加氢反应中的作用机理和动力学方面。助催化剂影响碳化铁中铁的电子性质。这些碳化物特性决定了催化剂活化H、CO和CO的能力。碱金属助催化剂的艾伦标度电负性与CO加氢生成高级烃和CH的速率以及CO或CO活化各步骤的速率常数成功相关。所获得的知识对于设计和制备在其他也使用此类助催化剂的反应中应用的催化剂可能具有重要价值。