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High-speed experimentation techniques applied to the synthesis of titanium silsesquioxane epoxidation catalysts

机译:高速实验技术应用于合成倍半硅氧烷钛环氧化物催化剂

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摘要

High-speed experimentation techniques are becoming powerful tools in many fields of chemical research, including catalysis. These techniques are characterized by the use of automated workstations that allow the preparation and the testing of a large number of small-volume samples in a short time. Here, high-speed experimentation techniques have been applied to the optimization of the synthesis of silsesquioxane precursors for titanium catalysts active in the epoxidation of alkenes. Different parameter spaces defined by the factors influencing the synthesis of silsesquioxanes were studied, and a very active and easy-to-prepare catalyst, based on silsesquioxanes obtained by the hydrolytic condensation of cyclopentyl trichlorosilane in acetonitrile, could be identified.
机译:在包括催化在内的许多化学研究领域中,高速实验技术正在成为强大的工具。这些技术的特点是使用自动化工作站,该工作站可以在短时间内制备和测试大量小批量样品。在这里,高速实验技术已被应用于最优化用于烯烃环氧化的钛催化剂的倍半硅氧烷前体的合成。研究了影响倍半硅氧烷合成的因素所定义的不同参数空间,并基于环戊基三氯硅烷在乙腈中水解缩合得到的倍半硅氧烷,可以鉴定出一种非常活泼且易于制备的催化剂。

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