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聚对苯二甲酸乙二酯在离子液体中的糖酵解理论研究

Theoretical studies on glycolysis of poly(ethylene terephthalate) in ionic liquids.

作者信息

Ju Zhaoyang, Xiao Weihua, Lu Xingmei, Liu Xiaomin, Yao Xiaoqian, Zhang Xiaochun, Zhang Suojiang

机构信息

College of Engineering, China Agricultural University Beijing 100083 P. R. China.

Key Laboratory of Green Process and Engineering, Beijing Key Laboratory of Ionic Liquids Clean Process, State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences Beijing 100190 P. R. China

出版信息

RSC Adv. 2018 Feb 21;8(15):8209-8219. doi: 10.1039/c7ra13173a. eCollection 2018 Feb 19.

Abstract

Ionic liquids (ILs) present superior catalytic performance in the glycolysis of ethylene terephthalate (PET). To investigate the microscopic degradation mechanism of PET, density functional theory (DFT) calculations have been carried out for the interaction between ILs and dimer, which is considered to symbolize PET. We found that hydrogen bonds (H-bonds) play a critical role in the glycolysis process. In this study, 24 kinds of imidazolium-based and tertiary ammonium-based ILs were used to study the effect of different anions and cations on the interaction with PET. Natural bond orbital (NBO) analysis, atoms in molecules (AIM) and reduced density gradient (RDG) approaches were employed to make in-depth study of the nature of the interactions. It is concluded that the interaction of cations with dimer is weaker than that of anions and when the alkyl chain in the cations is replaced by an unsaturated hydrocarbon, the interaction will become stronger. Furthermore, anions play more important roles than cations in the actual interactions with dimer. When the hydrogen of methyl is replaced by hydroxyl or carboxyl, the interaction becomes weak for the amino acid anions and dimer. This work also investigates the interaction between dimer and ion pairs, with the results showing that anions play a key role in forming H-bonds, while cations mainly attack the oxygen of carbonyl and have a π-stacking interaction with dimer. The comprehensive mechanistic study will help researchers in the future to design an efficient ionic liquid catalyst and offer a better understanding of the mechanism of the degradation of PET.

摘要

离子液体(ILs)在聚对苯二甲酸乙二酯(PET)的糖酵解过程中表现出卓越的催化性能。为了探究PET的微观降解机理,对离子液体与二聚体之间的相互作用进行了密度泛函理论(DFT)计算,二聚体被视为PET的代表。我们发现氢键(H键)在糖酵解过程中起着关键作用。在本研究中,使用了24种咪唑基和叔铵基离子液体来研究不同阴离子和阳离子对与PET相互作用的影响。采用自然键轨道(NBO)分析、分子中的原子(AIM)和密度降低梯度(RDG)方法对相互作用的本质进行了深入研究。结果表明,阳离子与二聚体的相互作用弱于阴离子,并且当阳离子中的烷基链被不饱和烃取代时,相互作用会增强。此外,在与二聚体的实际相互作用中,阴离子比阳离子起着更重要的作用。当甲基上的氢被羟基或羧基取代时,氨基酸阴离子与二聚体的相互作用变弱。这项工作还研究了二聚体与离子对之间的相互作用,结果表明阴离子在形成氢键中起关键作用,而阳离子主要攻击羰基的氧并与二聚体有π堆积相互作用。全面的机理研究将有助于未来的研究人员设计高效的离子液体催化剂,并更好地理解PET的降解机理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/696e/9078552/28040b832ffb/c7ra13173a-s1.jpg

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