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Structural properties and chemical bonds in double metal cyanide catalysts

机译:双金属氰化物催化剂的结构性质和化学键

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Double metal cyanide (DMC) catalysts are commonly applied at industrial ring-opening polymerization of the epoxides, being the initial stage of the polyurethanes manufacturing route. This group of catalysts is frequently used in industry, but the knowledge on the molecular nature of their high activity and selectivity is limited to some phenomenological hypotheses based on overall chemical premises. To shine some light on the relation between structural and chemical properties of DMC catalysts and their activity, the complementary X-ray powder diffraction, X-ray photoelectron spectroscopy, energy dispersive X-ray spectroscopy and X-ray absorption spectroscopy studies were performed. The comprehensive characterization of DMC catalyst synthesized from ZnCl2 and potassium hexacyanocobaltate(III) solution, in presence of the organic ligand ((BuOH)-Bu-t), confirmed that a significant part of the catalyst material reveals the features of the non-crystalline structure. Extended X-ray absorption fine structure (EXAFS) analysis established that only Zn atoms are the active metallic centers in the DMC catalyst. The coordination around Zn was changed from octahedral in reference material to tetrahedral in catalysts, and Cl atoms were detected near some of the Zn atoms, but no significant amount of oxygen atoms was detected, which agrees with XPS chemical analysis. The performed experimental studies give direct experimental evidence for the model deduced by Zhang et al., and for the calculation performed by Wojde et al. Moreover, the generally accepted formula Zn-3[Co(CN)(6)](2)center dot xZnCl(2)center dot ytBuOH center dot zH(2)O describing this catalyst is not valid, because none of the compounds were detected by XRD or EXAFS techniques. Regarding the relation between structural and chemical activity of catalyst, we conclude that for the chemical activity of DMC catalyst not only is the content of Cl very important, but also the fraction of non-crystalline phase, the formation of which is stimulated by ligand. The non-crystalline fraction of catalyst may offer the easier access to the active center with Cl. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:双金属氰化物(DMC)催化剂通常用于环氧化合物的工业开环聚合,这是聚氨酯生产路线的起始阶段。这组催化剂在工业中经常使用,但是有关其高活性和选择性的分子性质的知识仅限于基于整体化学前提的一些现象学假设。为了阐明DMC催化剂的结构和化学性质与其活性之间的关系,我们进行了补充X射线粉末衍射,X射线光电子能谱,能量色散X射线能谱和X射线吸收能谱研究。在有机配体((BuOH)-Bu-t)存在下,由ZnCl2和六氰基钴酸钾(III)溶液合成的DMC催化剂的综合表征,证实了催化剂材料的显着部分揭示了非晶态的特征。结构体。扩展的X射线吸收精细结构(EXAFS)分析确定,只有Zn原子是DMC催化剂中的活性金属中心。锌周围的配位从参考材料中的八面体变为催化剂中的四面体,并且在一些锌原子附近检测到Cl原子,但未检测到大量的氧原子,这与XPS化学分析相符。进行的实验研究为Zhang等人推导的模型和Wojde等人进行的计算提供了直接的实验证据。而且,描述该催化剂的公认的通式Zn-3 [Co(CN)(6)](2)中心点xZnCl(2)中心点ytBuOH中心点zH(2)O无效,因为没有化合物通过XRD或EXAFS技术检测。关于催化剂的结构活性与化学活性之间的关系,我们得出结论,对于DMC催化剂的化学活性而言,不仅Cl的含量非常重要,而且非晶态相的分数也很重要,而非晶相的形成受配体的刺激。催化剂的非晶态部分可以使Cl更容易进入活性中心。版权所有(c)2015 John Wiley&Sons,Ltd.

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