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Constructing a superior Co–Mo HDS catalyst from a crystalline precursor separated from the impregnating solution

机译:从与浸渍溶液分离的晶体前体中构建上co – Mo HDS催化剂

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In this work, a Co tetra-capped Keggin crystalline Co4Mo12 was separated from the impregnating solution through a self-assembly strategy. The crystalline Co4Mo12 was structurally characterized and used as a molecular platform to reveal the sulfidation procedure of the precursor in the construction of a superior Co–Mo hydrodesulfurization (HDS) catalyst. The higher HDS reactivity of the sulfide can be attributed to the structure-directing effects of the crystalline Co4Mo12 precursor. During the sulfidation procedure of the crystalline Co4Mo12 precursor, it initially decomposes at 100 °C and MoOxSy is produced due to the simple O–S exchange. With the temperature increasing to 180 °C, the Keggin-type structure in crystalline Co4Mo12 begins to collapse and four groups of edge-shared CoMo2O(S)13 triplets are formed. As the temperature continues to increase, the CoMo2O(S)13 triplets collapse and MoS2 is formed due to the deep O–S exchange at 200 °C. In this procedure, the water molecules serving as ligands can retard the sulfidation of Co promoters, which can guarantee Co-promoter interaction and re-dispersion at the edges of MoS2 nanoparticles to form the type II CoMoS active phase with higher performance. These results suggest that the crystalline Co4Mo12 precursor can be a superior precursor for the rational design and controllable preparation of HDS active sites.
机译:在这项工作中,通过自组装策略将CO TETRA覆盖的Keggin Crystaline Co4MO12与浸渍溶液分离。晶体CO4MO12在结构上表征并用作分子平台,以揭示前体在构造上二硫化(HDS)催化剂中的硫化过程。硫化物的较高HDS反应性可以归因于结晶CO4MO12前体的结构导向作用。在晶体CO4MO12前体的硫化过程中,它最初在100°C下分解,并且由于简单的O – S交换而产生了MOOXSY。随着温度升高到180°C,晶体CO4MO12中的Keggin型结构开始塌陷,并形成了四组边缘共享COMO2O(S)13个三重态。随着温度的持续升高,由于在200°C下的深O – S交换,COMO2O(S)13三重崩溃和MOS2形成。在此过程中,用作配体的水分子可以阻止CO启动子的硫化,这可以保证在MOS2纳米颗粒的边缘的联合促销相互作用和重新分散,以形成II型COMOS活性相,具有更高的性能。这些结果表明,晶体CO4MO12前体可以是HDS活性位点的理性设计和可控制备的优质前体。

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