Suppr超能文献

水-DMSO 二元混合物在低 DMSO 浓度下的静态和动态异常的理论和计算分析。

Theoretical and computational analysis of static and dynamic anomalies in water-DMSO binary mixture at low DMSO concentrations.

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.

出版信息

J Phys Chem B. 2011 Feb 3;115(4):685-92. doi: 10.1021/jp109622h. Epub 2010 Dec 27.

Abstract

Experiments have repeatedly observed both thermodynamic and dynamic anomalies in aqueous binary mixtures, surprisingly at low solute concentration. Examples of such binary mixtures include water-DMSO, water-ethanol, water-tertiary butyl alcohol (TBA), and water-dioxane, to name a few. The anomalies have often been attributed to the onset of a structural transition, whose nature, however, has been left rather unclear. Here we study the origin of such anomalies using large scale computer simulations and theoretical analysis in water-DMSO binary mixture. At very low DMSO concentration (below 10%), small aggregates of DMSO are solvated by water through the formation of DMSO-(H(2)O)(2) moieties. As the concentration is increased beyond 10-12% of DMSO, spanning clusters comprising the same moieties appear in the system. Those clusters are formed and stabilized not only through H-bonding but also through the association of CH(3) groups of DMSO. We attribute the experimentally observed anomalies to a continuum percolation-like transition at DMSO concentration X(DMSO) ≈ 12-15%. The largest cluster size of CH(3)-CH(3) aggregation clearly indicates the formation of such percolating clusters. As a result, a significant slowing down is observed in the decay of associated rotational auto time correlation functions (of the S═O bond vector of DMSO and O-H bond vector of water). Markedly unusual behavior in the mean square fluctuation of total dipole moment again suggests a structural transition around the same concentration range. Furthermore, we map our findings to an interacting lattice model which substantiates the continuum percolation model as the reason for low concentration anomalies in binary mixtures where the solutes involved have both hydrophilic and hydrophobic moieties.

摘要

实验在水的二元混合物中反复观察到热力学和动力学异常,令人惊讶的是,在低溶质浓度下就出现了这种异常。此类二元混合物的例子包括水-DMSO、水-乙醇、水-叔丁醇(TBA)和水-二氧六环等。这些异常通常归因于结构转变的开始,但这种转变的性质尚不清楚。在这里,我们使用大规模计算机模拟和理论分析研究了水-DMSO 二元混合物中这种异常的起源。在 DMSO 浓度非常低(低于 10%)时,DMSO 的小聚集体通过形成 DMSO-(H(2)O)(2) 部分被水溶剂化。随着浓度从 10-12%的 DMSO 增加到超过 12-15%,系统中出现了由相同部分组成的跨簇。这些簇不仅通过氢键形成和稳定,而且通过 DMSO 的 CH(3)基团的缔合形成和稳定。我们将实验观察到的异常归因于 DMSO 浓度 X(DMSO) ≈ 12-15%时的连续渗流样转变。CH(3)-CH(3)聚集的最大簇大小清楚地表明了这种渗流簇的形成。结果,在关联的旋转自相关函数(DMSO 的 S═O 键向量和水的 O-H 键向量)的衰减中观察到明显的减速。总偶极矩的均方涨落的明显异常行为再次表明在相同浓度范围内发生了结构转变。此外,我们将我们的发现映射到相互作用晶格模型上,该模型证实了连续渗流模型是涉及亲水性和疏水性部分的二元混合物中低浓度异常的原因。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验