Perera A S, Trogadas P, Nigra M M, Yu H, Coppens M-O
1Centre for Nature Inspired Engineering, University College London, Torrington Place, London, WC1E 7JE UK.
2Department of Chemical Engineering, University College London, Torrington Place, London, WC1E 7JE UK.
J Mater Sci. 2018;53(10):7279-7293. doi: 10.1007/s10853-018-2057-2. Epub 2018 Jan 29.
An efficient approach to improve the catalytic activity of titanosilicates is introduced. The Doehlert matrix (DM) statistical model was utilized to probe the synthetic parameters of mesoporous titanosilicate microspheres (MTSM), in order to increase their catalytic activity with a minimal number of experiments. Synthesis optimization was carried out by varying two parameters simultaneously: homogenizing temperature and surfactant weight. Thirteen different MTSM samples were synthesized in two sequential 'matrices' according to Doehlert conditions and were used to catalyse the epoxidation of cyclohexene with -butyl hydroperoxide. The samples (and the corresponding synthesis conditions) with superior catalytic activity in terms of product yield and selectivity were identified. In addition, this approach revealed the limiting values of each synthesis parameter, beyond which the material becomes catalytically ineffective. This study demonstrates that the DM approach can be broadly used as a powerful and time-efficient tool for investigating the optimal synthesis conditions of heterogeneous catalysts.
介绍了一种提高钛硅酸盐催化活性的有效方法。采用多勒尔特矩阵(DM)统计模型探究介孔钛硅微球(MTSM)的合成参数,以便通过最少的实验次数提高其催化活性。通过同时改变两个参数进行合成优化:均化温度和表面活性剂重量。根据多勒尔特条件,在两个连续的“矩阵”中合成了13个不同的MTSM样品,并用于催化环己烯与叔丁基过氧化氢的环氧化反应。确定了在产物收率和选择性方面具有优异催化活性的样品(以及相应的合成条件)。此外,该方法揭示了每个合成参数的极限值,超过该极限值材料的催化活性就会失效。本研究表明,DM方法可广泛用作研究多相催化剂最佳合成条件的强大且省时的工具。