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Promoted Iron Nanocrystals Obtained via Ligand Exchangeas Active and Selective Catalysts for Synthesis Gas Conversion

机译:通过配体交换获得促进的铁纳米晶体用作合成气转化的活性和选择性催化剂

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摘要

Colloidal synthesis routes have been recently used to fabricate heterogeneous catalysts with more controllable and homogeneous properties. Herein a method was developed to modify the surface composition of colloidal nanocrystal catalysts and to purposely introduce specific atoms via ligands and change the catalyst reactivity. Organic ligands adsorbed on the surface of iron oxide catalysts were exchanged with inorganic species such as Na2S, not only to provide an active surface but also to introduce controlled amounts of Na and S acting as promoters for the catalytic process. The catalyst composition was optimized for the Fischer–Tropsch direct conversion of synthesis gas into lower olefins. At industrially relevant conditions, these nanocrystal-based catalysts with controlled composition were more active, selective, and stable than catalysts with similar composition but synthesized using conventional methods, possibly due to their homogeneity of properties and synergic interaction of iron and promoters.
机译:胶体合成路线最近已用于制造具有更可控和均质性质的非均相催化剂。在本文中,开发了改变胶体纳米晶体催化剂的表面组成并通过配体有目的地引入特定原子并改变催化剂反应性的方法。吸附在氧化铁催化剂表面的有机配体与无机物质(例如Na2S)交换,不仅提供了活性表面,而且引入了可控制量的Na和S作为催化过程的促进剂。该催化剂的组成经过优化,可用于费-托合成气直接转化为低级烯烃。在工业上相关的条件下,这些具有受控组成的纳米晶基催化剂比具有相似组成但使用常规方法合成的催化剂具有更高的活性,选择性和稳定性,这可能是由于它们的性质均一以及铁和促进剂的协同作用。

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