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首页> 外文期刊>Catalysis science & technology >Immobilized Grubbs catalysts on mesoporous silica materials: insight into support characteristics and their impact on catalytic activity and product selectivity
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Immobilized Grubbs catalysts on mesoporous silica materials: insight into support characteristics and their impact on catalytic activity and product selectivity

机译:催化剂固定化Grubbs介孔二氧化硅材料:洞察支持的特征及其对催化活性的影响产品选择性

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Silica materials show a high ability to physisorb the 2nd generation Hoveyda-Grubbs catalyst (HG2) in organic solvents. The interaction with the complex, likely proceeding through hydrogen bonding, is particularly strong with surfaces rich in silanols, wherein geminal silanols show the highest affinity, and therefore mesoporous silicas are the supports of choice. As long as the silica material is sufficiently pure and free of cages, in which high HG2 concentrations can accumulate, the immobilization of HG2 occurs in a very stable manner. Despite the complex stability, exploration of HG2-loaded mesoporous silica supports in metathesis of cis-cyclooctene indicated significant diffusional and confinement effects, and therefore control of pore size, pore architecture and morphology in balance with the intrinsic catalytic activity is essential for catalyst design. As metathesis of cis-cyclooctene apparently proceeds through the initial formation of linear polymers, followed by backbiting forming cyclic oligomers, potential interference of mass transport and space restriction issues is not surprising. This study shows that the catalyst requirements are best met with the TUD-1 silica support (1.24 wt% HG2). Under such conditions, the heterogeneous catalyst performs as good as the homogeneous one, presenting a thermodynamic distribution of cyclic oligomers. The latter catalyst also showed high catalyst stability in a continuous fixed bed reactor, corresponding to a catalytic turnover number of 18000. The catalytic rates and catalyst stability are lower when operating in a diffusional regime, therefore long reaction times are required to reach the thermodynamic product distribution. Water removal from the catalyst is also important, not because of HG2 stability reasons, but of lower reaction rates which were measured for hydrated samples, likely due to inhibition of cis-cyclooctene uptake in the pores. Mild removal of physisorbed water before immobilization is therefore advised, for instance by thermal treatments, but care has to be taken to keep the silanol density high for firm HG2 immobilization and also to avoid formation of reactive siloxanes, which chemically react with and destroy HG2. Surprisingly, reactive siloxane formation conditions strongly depend on the silica type, with TUD-1 being fairly sensitive to their formation. Finally, the best HG2-loaded TUD-1 catalyst is used successfully in a broad set of other metathesis reactions.
机译:physisorb硅材料表现出高能力第二代Hoveyda-Grubbs催化剂(HG2)在有机溶剂。复杂,可能继续通过氢结合,与表面尤其强烈富含硅醇,偕的硅醇最高的亲和力,因此介孔二氧化硅是选择的支持。硅材料是足够纯洁和自由笼子里,可以HG2浓度很高积累,HG2出现在的固定非常稳定的方式。稳定,探索HG2-loaded介孔硅支持cis-cyclooctene置换作用表示重要的扩散和监禁影响,因此控制孔隙大小、孔隙体系结构和形态与平衡内在的催化活性是至关重要的催化剂的设计。显然通过最初的形成的线性聚合物,其次是诽谤形成环状低聚物,潜在的干扰大规模交通和空间限制的问题并不令人惊讶。最好要求会见了TUD-1催化剂硅(1.24 wt % HG2)的支持。条件下,非均相催化剂执行一样好均匀,呈现热力学循环低聚物的分布。后者催化剂也显示较高的催化剂稳定连续固定床反应器,相应的催化转化率18000. 较低的扩散机制操作时,因此长反应时间要求达到热力学产物分布。水从催化剂也删除重要的是,不是因为HG2稳定性的原因,但低反应速率的测量由于抑制水化样品,可能cis-cyclooctene吸收毛孔。physisorbed水之前固定因此建议,比如热治疗,但必须注意保持硅醇密度高公司HG2固定同时也避免形成的活性化学反应和硅氧烷摧毁HG2。强烈依赖于形成条件硅类型,TUD-1是相当敏感的他们的形成。TUD-1成功地用于广泛的催化剂其他组交换反应。

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