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疏水型低共熔溶剂中的异质性:小角X射线散射预峰与局部环境

Heterogeneity in hydrophobic deep eutectic solvents: SAXS prepeak and local environments.

作者信息

Malik Akshay, Kashyap Hemant K

机构信息

Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.

出版信息

Phys Chem Chem Phys. 2021 Feb 19;23(6):3915-3924. doi: 10.1039/d0cp05407k.

Abstract

Recently, the introduction of novel deep eutectic solvents having a hydrophobic character with greener starting materials has motivated researchers to explore these water-immiscible solvents, owing to their new potential applications. In this regard, herein atomistic molecular dynamics simulations have been performed to understand the bulk phase morphology present in dl-menthol based hydrophobic deep eutectic solvents (HDESs) with organic acids of different chain lengths used as hydrogen bond donors. From the appearance of a prepeak in the simulated total X-ray scattering structure function (S(q)), we found an evidence of intermediate-range structural organization in these HDESs. We show that the prepeak originates from the self-segregation of dl-menthol and the polar hydroxyl groups of the acids, as witnessed from partitioning of the total S(q). Surprisingly, even for a very long tail containing HDES, the apolar-apolar component shows only nominal contribution to the prepeak. We show that the structure of these HDESs is dominated by a set of very strong intermolecular hydrogen bonding between menthol-menthol, acid-acid, and menthol-acid molecules. Our results show that there is competition between the hydroxyl hydrogen of the acids and menthol to form an intermolecular hydrogen bond with the carbonyl oxygen of the acids and hydroxyl oxygen of menthol.

摘要

最近,新型具有疏水特性且起始原料更环保的深共熔溶剂的引入,促使研究人员探索这些与水不混溶的溶剂,因为它们有新的潜在应用。在这方面,本文进行了原子分子动力学模拟,以了解基于dl-薄荷醇的疏水深共熔溶剂(HDESs)与用作氢键供体的不同链长有机酸的本体相形态。从模拟的总X射线散射结构函数(S(q))中出现的预峰,我们发现了这些HDESs中存在中程结构组织的证据。我们表明,预峰源于dl-薄荷醇和酸的极性羟基的自分离,这从总S(q)的分配中可以看出。令人惊讶的是,即使对于含有很长尾巴的HDES,非极性-非极性成分对预峰的贡献也仅为名义上的。我们表明,这些HDESs的结构由薄荷醇-薄荷醇、酸-酸和薄荷醇-酸分子之间的一组非常强的分子间氢键主导。我们的结果表明,酸和薄荷醇的羟基氢之间存在竞争,以与酸的羰基氧和薄荷醇的羟基氧形成分子间氢键。

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