首页> 外文期刊>Journal of the American Chemical Society >Spectroscopically Distinct Sites Present in Methyltrioxorhenium Grafted onto Silica-Alumina, and Their Abilities to Initiate Olefin Metathesis
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Spectroscopically Distinct Sites Present in Methyltrioxorhenium Grafted onto Silica-Alumina, and Their Abilities to Initiate Olefin Metathesis

机译:接枝到二氧化硅-氧化铝上的甲基三氧or的光谱学上不同的位点及其引发烯烃复分解的能力

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摘要

Deposition of CH_3ReO_3 onto the surface of dehydrated, amorphous silica-alumina generates a highly active, supported catalyst for the metathesis of olefins. However, silica-alumina with a high (10 wt %) Re loading is no more active than silica-alumina with low (1 wt %) loading, while CH_3ReO_3 on silica is completely inactive. Catalysts prepared by grafting CH_3ReO_3 on silica-alumina contain two types of spectroscopically distinct sites. The more strongly bound sites are responsible for olefin metathesis activity and are formed preferentially at low Re loadings ( ≤ 1 wt %). They are created by two Lewis acid/base interactions: (1) the coordination of an oxo ligand to an Al center of the support and (2) interaction of one of the adjacent bridging oxygens (AlOSi) with the Re center. At higher Re loadings (1 -10 wt %), CH_3ReO_3 also interacts with surface silanols by H-bonding. This gives rise to highly mobile sites, most of which can be observed by ~(13)C solid-state NMR even without magic-angle spinning. Their formation can be prevented by capping the surface hydroxyl groups with hexamethyldisilazane prior to grafting CH_3ReO_3, resulting in a metathesis catalyst that is more selective, more robust, and more efficient in terms of Re use.
机译:将CH_3ReO_3沉积在脱水的无定形二氧化硅-氧化铝表面上可生成用于烯烃复分解的高活性负载型催化剂。然而,具有高(10重量%)Re负载的二氧化硅-氧化铝比具有低(1重量%)负载的二氧化硅-氧化铝没有活性,而二氧化硅上的CH_3ReO_3是完全不活泼的。通过在二氧化硅-氧化铝上接枝CH_3ReO_3制备的催化剂包含两种类型的光谱不同的位点。结合更牢固的位点负责烯烃的复分解活性,并优先在低Re负载(≤1 wt%)下形成。它们是由两种路易斯酸/碱相互作用产生的:(1)氧代配体与载体的Al中心的配位,和(2)相邻的桥接氧(AlOSi)之一与Re中心的相互作用。在较高的Re含量(1 -10 wt%)下,CH_3ReO_3还通过H键与表面硅烷醇相互作用。这产生了高度可移动的位点,即使没有魔角旋转,也可以通过〜(13)C固态NMR观察到大多数位置。通过在接枝CH_3ReO_3之前用六甲基二硅氮烷封盖表面羟基,可以防止它们的形成,从而使复分解催化剂在Re的使用方面更具选择性,更耐用和更有效。

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