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用于催化的聚(苯乙烯 - 二乙烯基苯)离子交换树脂对正丁醇的吸附

1-Butanol absorption in poly(styrene-divinylbenzene) ion exchange resins for catalysis.

作者信息

Pérez-Maciá M A, Curcó D, Bringué R, Iborra M, Rodríguez-Ropero F, van der Vegt N F A, Aleman Carlos

机构信息

Departament d'Enginyeria Química, Facultad de Química, Universitat de Barcelona, Martí i Franqués 1, Barcelona E-08028, Spain.

Eduard-Zintl-Institut für Anorganische und Physikalische Chemie and Center of Smart Interfaces, Technische Universität Darmstadt, Alarich-Weiss-Straße 10, 64287, Darmstadt, Germany.

出版信息

Soft Matter. 2015 Dec 21;11(47):9144-9. doi: 10.1039/c5sm02168e.

Abstract

The swelling behaviour of poly(styrene-co-divinylbenzene), P(S-DVB), ion exchange resins in 1-butanol (BuOH) has been studied by means of atomistic classical molecular dynamics simulations (MD). The topological characteristics reported for the resin in the dry state, which exhibited complex internal loops (macropores), were considered for the starting models used to examine the swelling induced by BuOH contents ranging from 10% to 50% w/w. Experimental measurements using a laser diffraction particle size analyzer indicate that swelling causes a volume variation with respect to the dry resin of 21%. According to MD simulations, such a volume increment corresponds to a BuOH absorption of 31-32% w/w, which is in excellent agreement with the indirect experimental estimation (i.e. 31% w/w). Simulations reveal that, independently of the content of BuOH, the density of the swelled resin is higher than that of the dry resin, evidencing that the alcohol provokes important structural changes in the polymeric matrix. Thus, BuOH molecules cause a collapse of the resin macropores when the content of alcohol is ≤20% w/w. In contrast, when the concentration of BuOH is close to the experimental value (∼30% w/w), P(S-DVB) chains remain separated by pores faciliting the access of the reactants to the reaction centers. On the other hand, evaluation of both bonding and non-bonding interactions indicates that the mixing energy is the most important contribution to the absorption of BuOH into the P(S-DVB) resin. Overall, the results displayed in this work represent a starting point for the theoretical study of the catalytic conversion of BuOH into di-n-butyl ether in P(S-DVB) ion exchange resins using sophisticated electronic methods.

摘要

通过原子经典分子动力学模拟(MD)研究了聚(苯乙烯 - 共 - 二乙烯基苯)P(S - DVB)离子交换树脂在1 - 丁醇(BuOH)中的溶胀行为。用于检查10%至50% w/w BuOH含量引起的溶胀的初始模型考虑了干燥状态下树脂报道的拓扑特征,其呈现出复杂的内部环(大孔)。使用激光衍射粒度分析仪的实验测量表明,溶胀导致相对于干燥树脂的体积变化为21%。根据MD模拟,这种体积增加对应于31 - 32% w/w的BuOH吸收,这与间接实验估计值(即31% w/w)非常吻合。模拟表明,与BuOH含量无关,溶胀树脂的密度高于干燥树脂,证明醇在聚合物基质中引起了重要的结构变化。因此,当醇含量≤20% w/w时,BuOH分子会导致树脂大孔塌陷。相反,当BuOH浓度接近实验值(约30% w/w)时,P(S - DVB)链被孔隙隔开,便于反应物进入反应中心。另一方面,对键合和非键合相互作用的评估表明,混合能是BuOH吸收到P(S - DVB)树脂中的最重要贡献。总体而言,这项工作中展示的结果代表了使用复杂电子方法对P(S - DVB)离子交换树脂中BuOH催化转化为二正丁醚进行理论研究的起点。

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