首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Structure-direction of chiral 2-hydroxymethyl-1-benzyl-1-methylpyrrolidinium in the cotemplated synthesis of ferrierite: Fundaments of diastereo-recognition from non-chiral microporous structures
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Structure-direction of chiral 2-hydroxymethyl-1-benzyl-1-methylpyrrolidinium in the cotemplated synthesis of ferrierite: Fundaments of diastereo-recognition from non-chiral microporous structures

机译:镁碱沸石的共模板合成中手性2-羟基甲基-1-苄基-1-甲基吡咯烷鎓的结构方向:非手性微孔结构的非对映识别基础

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In this work we have explored the structure directing effect of two of the diastereoisomers of the chiral cation 2-hydroxymethyl-1-benzyl-1-methylpyrrolidinium (bmpm) in aluminosilicate preparations using tetramethylammonium (TMA) as a co-SDA. The pure SS-bmpm isomer, an equimolar mixture of the RS and SS-bmpm isomers and an enriched mixture in the RS isomer (~77%) were tested in these preparations and the three succeeded in crystallizing a ferrierite-type material with a larger interlayer distance between the FER sheets than in the fully-condensed FER structure. Molecular mechanics calculations showed that the structure directing ability of the RS isomer to direct the crystallization of the fully-condensed FER structure is lower due to the larger molecular size brougth about by the 'anti' configuration of the methyl and the hydroxymethyl substituents, thus suggesting a better structure directing efficiency for the SS isomer. However, the large size of the structure directing agent bmpm forces the FER structure to crystallize with a larger interlayer distance between the FER sheets, canceling the difference in the fitting of the diastereoisomers within the zeolite framework and so preventing the observation of a different structure directing efficiency of the two diastereoisomers in the synthesis of the FER materials.
机译:在这项工作中,我们探索了使用四甲基铵(TMA)作为共SDA的铝硅酸盐制剂中的两个手性阳离子2-羟甲基-1-苄基-1-甲基吡咯烷鎓(bmpm)的非对映异构体的结构导向作用。在这些制剂中,测试了纯SS-bmpm异构体,RS和SS-bmpm异构体的等摩尔混合物以及RS异构体中的富集混合物(〜77%),并且这三者成功地结晶了具有较大粒径的镁碱沸石型材料。与完全凝结的FER结构相比,FER薄片之间的层间距离更大。分子力学计算表明,由于甲基和羟甲基取代基的“反”构型具有较大的分子尺寸,RS异构体指导完全缩合的FER结构结晶的结构定向能力较低。 SS异构体具有更好的结构导向效率。但是,结构导向剂bmpm的大尺寸迫使FER结构以FER薄片之间较大的层间距离结晶,从而消除了非对映异构体在沸石骨架内配合的差异,因此妨碍了观察到不同的结构导向剂。两种非对映异构体在FER材料合成中的效率

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