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Spectroscopic, calorimetric, and catalytic evidences of hydrophobicity on Ti-MCM-41 silylated materials for olefin epoxidations

机译:Ti-MCM-41硅烷化材料用于烯烃环氧化的疏水性的光谱学,量热和催化证据

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摘要

Hydrophobic Ti-MCM-41 samples prepared by post-synthesis silylation treatment demonstrate to be highly active and selective catalysts in olefins epoxidation by using organic hydroperoxides as oxidizing agents in liquid phase reaction systems. Epoxide yields show important enhancements with increased silylation degrees of the Ti-mesoporous samples. Catalytic studies are combined and correlated with spectroscopic techniques (e.g. XRD, XANES, UV-Visible, 29Si MAS-NMR) and calorimetric measurements to better understand the changes in the surface chemistry of Ti-MCM-41 samples due to the post-synthesis silylation treatment and to ascertain the role of these trimethylsilyl groups incorporated in olefin epoxidation. In such manner, the effect of the organic moieties on solids, and both water and glycol molecules contents on the catalytic activity and selectivity are analyzed in detail. Results show that the hydrophobicity level of the samples is responsible for the decrease in water adsorption and, consequently, the negligible formation of the non-desired glycol during the catalytic process. Thus, catalyst deactivation by glycol poisoning of Ti active sites is greatly diminished, this increasing catalyst stability and leading to practically quantitative production of the corresponding epoxide. The extended use of these hydrophobic Ti-MCM-41 catalysts together with organic hydroperoxides for the highly efficient and selective epoxidation of natural terpenes is also exemplified.
机译:通过合成后的甲硅烷基化处理制备的疏水性Ti-MCM-41样品通过在液相反应体系中使用有机氢过氧化物作为氧化剂,证明是烯烃环氧化中的高活性和选择性催化剂。钛中孔样品的甲硅烷基化程度越高,环氧化物的产量显示出重要的提高。将催化研究与光谱技术(例如XRD,XANES,UV-Visible,29Si MAS-NMR)和量热测量相结合并进行关联,以更好地了解由于合成后甲硅烷基化导致的Ti-MCM-41样品表面化学变化处理并确定这些三甲基甲硅烷基在烯烃环氧化中的作用。以这种方式,详细分析了有机部分对固体以及水和二醇分子含量对催化活性和选择性的影响。结果表明,样品的疏水性水平是导致水吸附减少的原因,因此,在催化过程中不需要的二醇的形成可忽略不计。因此,大大减少了因钛活性位的乙二醇中毒而引起的催化剂失活,从而提高了催化剂的稳定性,并导致实际定量生产相应的环氧化物。还举例说明了这些疏水性Ti-MCM-41催化剂与有机氢过氧化物一起广泛用于天然萜烯的高效和选择性环氧化的例子。

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