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柔韧性对STW型沸石中手性异构体分离的影响。

Influence of Flexibility on the Separation of Chiral Isomers in STW-Type Zeolite.

作者信息

Bueno-Perez Rocio, Balestra Salvador R G, Camblor Miguel A, Min Jung Gi, Hong Suk Bong, Merkling Patrick J, Calero Sofia

机构信息

Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide, Ctra. de Utrera, km.1, 41013, Seville, Spain.

Instituto de Ciencia de Materiales de Madrid (ICMM), Consejo Superior de Investigaciones Científicas (CSIC), Sor Juana Inés de la Cruz 3, 28049, Madrid, Spain.

出版信息

Chemistry. 2018 Mar 15;24(16):4121-4132. doi: 10.1002/chem.201705627. Epub 2018 Feb 19.

Abstract

Molecular simulation, through the computation of adsorption isotherms, is a useful predictive tool for the selective capacity of nanoporous materials. Generally, adsorbents are modelled as rigid frameworks, as opposed to allowing for vibrations of the lattice, and this approximation is assumed to have negligible impact on adsorption. In this work, this approach was tested in an especially challenging system by computing the adsorption of the chiral molecules 2-pentanol, 2-methylbutanol and 3-methyl-2-butanol in the all-silica and germanosilicate chiral zeolites STW and studying their lattice vibrations upon adsorption. The analysis of single- and multicomponent adsorption isotherms showed the suitability of STW-type zeolites as molecular sieves for chiral separation processes, which pose a challenging task in the chemical and pharmaceutical industries. Moreover, new experimental adsorption data validate the force field employed. The results reveal that the lattice vibrations of the all-silica framework are sorbate-independent, while those of germanosilicate STW show host-guest coupling modulated by uptake and sorbate type that disrupts the chiral recognition sites. This study indicates that the effects of intrinsic flexibility on the selective capacity of nanoporous materials may range from low to high impact, and some of them could not have been foreseen even after examination of the structural dynamics of an empty framework.

摘要

通过计算吸附等温线,分子模拟是一种用于预测纳米多孔材料选择性容量的有用工具。通常,吸附剂被建模为刚性框架,而不是考虑晶格振动,并且假定这种近似对吸附的影响可以忽略不计。在这项工作中,通过计算手性分子2-戊醇、2-甲基丁醇和3-甲基-2-丁醇在全硅和锗硅手性沸石STW中的吸附,并研究它们吸附时的晶格振动,在一个特别具有挑战性的系统中测试了这种方法。单组分和多组分吸附等温线的分析表明,STW型沸石适合作为手性分离过程的分子筛,这在化学和制药行业中是一项具有挑战性的任务。此外,新的实验吸附数据验证了所采用的力场。结果表明,全硅骨架的晶格振动与吸附质无关,而锗硅STW的晶格振动则表现出由吸附量和吸附质类型调制的主客体耦合,这会破坏手性识别位点。这项研究表明,固有柔性对纳米多孔材料选择性容量的影响可能从低到高,其中一些影响即使在研究空骨架的结构动力学后也无法预见。

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