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含杂质水的绿色溶剂聚乙二醇的分子动力学研究

Molecular Dynamics Study of the Green Solvent Polyethylene Glycol with Water Impurities.

作者信息

Hoffmann Markus M, Too Matthew D, Paddock Nathaniel A, Horstmann Robin, Kloth Sebastian, Vogel Michael, Buntkowsky Gerd

机构信息

Department of Chemistry and Biochemistry, State University of New York Brockport, Brockport, NY 14420, USA.

Institute of Condensed Matter Physics, Technical University Darmstadt, Hochschulstraße 6, 64289 Darmstadt, Germany.

出版信息

Molecules. 2024 Apr 30;29(9):2070. doi: 10.3390/molecules29092070.

Abstract

Polyethylene glycol (PEG) is one of the environmentally benign solvent options for green chemistry. It readily absorbs water when exposed to the atmosphere. The Molecular Dynamics (MD) simulations of PEG200, a commercial mixture of low molecular weight polyethyelene glycol oligomers, as well as di-, tetra-, and hexaethylene glycol are presented to study the effect of added water impurities up to a weight fraction of 0.020, which covers the typical range of water impurities due to water absorption from the atmosphere. Each system was simulated a total of four times using different combinations of two force fields for the water (SPC/E and TIP4P/2005) and two force fields for the PEG and oligomer (OPLS-AA and modified OPLS-AA). The observed trends in the effects of water addition were qualitatively quite robust with respect to these force field combinations and showed that the water does not aggregate but forms hydrogen bonds at most between two water molecules. In general, the added water causes overall either no or very small and nuanced effects in the simulation results. Specifically, the obtained water RDFs are mostly identical regardless of the water content. The added water reduces oligomer hydrogen bonding interactions overall as it competes and forms hydrogen bonds with the oligomers. The loss of intramolecular oligomer hydrogen bonding is in part compensated by oligomers switching from inter- to intramolecular hydrogen bonding. The interplay of the competing hydrogen bonding interactions leads to the presence of shallow extrema with respect to the water weight fraction dependencies for densities, viscosities, and self-diffusion coefficients, in contrast to experimental measurements, which show monotonous dependencies. However, these trends are very small in magnitude and thus confirm the experimentally observed insensitivity of these physical properties to the presence of water impurities.

摘要

聚乙二醇(PEG)是绿色化学中对环境无害的溶剂选择之一。它暴露在大气中时很容易吸收水分。本文展示了对PEG200(一种低分子量聚乙二醇低聚物的商业混合物)以及二甘醇、四甘醇和六甘醇进行的分子动力学(MD)模拟,以研究添加水杂质(重量分数高达0.020)的影响,该重量分数涵盖了因从大气中吸收水分而产生的典型水杂质范围。每个系统使用水的两种力场(SPC/E和TIP4P/2005)以及PEG和低聚物的两种力场(OPLS-AA和改性OPLS-AA)的不同组合总共模拟了四次。关于这些力场组合,添加水的影响所观察到的趋势在定性上相当稳健,并且表明水不会聚集,而是最多在两个水分子之间形成氢键。一般来说,添加的水在模拟结果中总体上要么没有影响,要么产生非常小且细微的影响。具体而言,无论含水量如何,所获得的水径向分布函数大多相同。添加的水总体上减少了低聚物的氢键相互作用,因为它与低聚物竞争并形成氢键。分子内低聚物氢键的损失部分由低聚物从分子间氢键转变为分子内氢键来补偿。与实验测量结果(显示单调依赖性)相比,相互竞争的氢键相互作用导致密度、粘度和自扩散系数相对于水重量分数依赖性出现浅极值。然而,这些趋势的幅度非常小,因此证实了实验观察到这些物理性质对水杂质的存在不敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cef6/11085543/7c284afdf027/molecules-29-02070-g001.jpg

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