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Post-synthesis of MSE-type titanosilicates by interzeolite transformation for selective anisole hydroxylation

机译:Post-synthesis of MSE-type titanosilicates by interzeolite transformation for selective anisole hydroxylation

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The practical application of MSE-type titanosilicate (Ti-MSE) catalysts in liquid-phase oxidation processes is facing the problem of inefficient and complex synthesis. A novel and efficient strategy is developed to post-synthesize Ti-MSE by the combination of interzeolite transformation, dealumination and isomorphous substitution of Ti. With the assistance of MCM-68 seeds and tetraethylammonium hydroxide (TEAOH) as an organic structure-directing agent, the MSE aluminosilicate was rapidly crystallized in only 1 day with a high solid yield of 88.3% via the dissolution–recrystallization of siliceous Beta zeolite. The structural similarity between the parent Beta and target MSE was revealed to play a vital role in realizing the efficient interzeolite transformation. After dealumination and solid–gas treatment with TiCl4 vapor, the Ti-MSE-trans catalyst was readily obtained, which exhibited high catalytic activity in anisole hydroxylation with a methoxyphenol yield of 54.9% and a particularly high para-selectivity of 96.2%. Electrostatic potential (ESP) and density functional theory (DFT) calculations revealed that the framework hydroxyls in Ti-MSE strongly interact with the oxygen-containing substituent groups in aromatic substrates, responsible for the high para-selectivity.
机译:MSE-type的实际应用titanosilicate (Ti-MSE)催化剂在液相氧化过程面临的问题低效的和复杂的合成。有效的开发策略post-synthesize Ti-MSE的结合interzeolite转换、dealumination和同形替换。援助的mcm - 68种子和四乙铵氢氧化(TEAOH)作为一个有机的一类代理,MSE铝硅酸盐只是迅速结晶1天高固体收益率为88.3%通过的硅质dissolution-recrystallizationβ沸石。父母β和目标MSE了发挥在实现高效的至关重要的作用interzeolite转换。与TiCl4气相处理,Ti-MSE-trans催化剂是容易获得的,苯甲醚中表现出高的催化活性羟基化methoxyphenol收益率为54.9%和para-selectivity特别高96.2%。泛函理论(DFT)计算的框架氢氧根Ti-MSE强劲与含氧取代基在芳香基质组,负责高para-selectivity。

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