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Journal ArticleDOI

Structural anomaly and dynamic heterogeneity in cycloether/water binary mixtures: Signatures from composition dependent dynamic fluorescence measurements and computer simulations.

TLDR
Whether these cycloethers can induce stiffening and transition of water H-bond network structure and, if they do, whether such structural modification differentiates the chemical nature (dipolar or quadrupolar) of the cosolvent molecules is investigated.
Abstract
We have performed steady state UV-visible absorption and time-resolved fluorescence measurements and computer simulations to explore the cosolvent mole fraction induced changes in structural and dynamical properties of water/dioxane (Diox) and water/tetrahydrofuran (THF) binary mixtures. Diox is a quadrupolar solvent whereas THF is a dipolar one although both are cyclic molecules and represent cycloethers. The focus here is on whether these cycloethers can induce stiffening and transition of water H-bond network structure and, if they do, whether such structural modification differentiates the chemical nature (dipolar or quadrupolar) of the cosolvent molecules. Composition dependent measured fluorescence lifetimes and rotation times of a dissolved dipolar solute (Coumarin 153, C153) suggest cycloether mole-fraction (X(THF)/Diox) induced structural transition for both of these aqueous binary mixtures in the 0.1 ≤ X(THF)/Diox ≤ 0.2 regime with no specific dependence on the chemical nature. Interestingly, absorption measurements reveal stiffening of water H-bond structure in the presence of both the cycloethers at a nearly equal mole-fraction, X(THF)/Diox ∼ 0.05. Measurements near the critical solution temperature or concentration indicate no role for the solution criticality on the anomalous structural changes. Evidences for cycloether aggregation at very dilute concentrations have been found. Simulated radial distribution functions reflect abrupt changes in respective peak heights at those mixture compositions around which fluorescence measurements revealed structural transition. Simulated water coordination numbers (for a dissolved C153) and number of H-bonds also exhibit minima around these cosolvent concentrations. In addition, several dynamic heterogeneity parameters have been simulated for both the mixtures to explore the effects of structural transition and chemical nature of cosolvent on heterogeneous dynamics of these systems. Simulated four-point dynamic susceptibility suggests formation of clusters inducing local heterogeneity in the solution structure.

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Citations
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Journal ArticleDOI

Micelle Formation in Aqueous Solutions of Room Temperature Ionic Liquids: A Molecular Dynamics Study.

TL;DR: The larger the anisotropy of the ionic liquid the lower the critical concentration and the larger the proportion of monomers forming part of the micelles, which is in line with experimental evidence reported for these systems.
Journal ArticleDOI

Dielectric relaxation in acetamide + urea deep eutectics and neat molten urea: Origin of time scales via temperature dependent measurements and computer simulations.

TL;DR: The temporal heterogeneity aspects of these media have been investigated by examining the simulated particle motion characteristics and substantiated by estimating the dynamically correlated time scales and length-scales through simulations of four-point susceptibilities and density correlations.
Journal ArticleDOI

Collective dynamic dipole moment and orientation fluctuations, cooperative hydrogen bond relaxations, and their connections to dielectric relaxation in ionic acetamide deep eutectics: Microscopic insight from simulations.

TL;DR: It is found that reorientation of ion-complexed acetamide molecules generates relaxation timescales that are in sub-nanosecond to nanosecond range, which explains in molecular terms the nanose Cond timescale reported by recent giga-Hertz DR measurements.
Journal ArticleDOI

Interaction and Dynamics in a Fully Biodegradable Glucose-Containing Naturally Abundant Deep Eutectic Solvent: Temperature-Dependent Time-Resolved Fluorescence Measurements

TL;DR: A new room temperature deep eutectic solvent composed of glucose, urea and water has been prepared, and its relaxation dynamics explored via temperature dependent time-resolved fluorescence measurements employing hydrophilic and hydrophobic solute probes, indicating pronounced temporal heterogeneity in the relaxation dynamics.
Journal ArticleDOI

How Heterogeneous Are Trehalose/Glycerol Cryoprotectant Mixtures? A Combined Time-Resolved Fluorescence and Computer Simulation Investigation.

TL;DR: This work provides the first insight into the molecular motions and interspecies interaction in a representative Cryoprotectant mixture, and stimulates further study to investigate the interconnection between cryoprotection and dynamic heterogeneity.
References
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Journal ArticleDOI

Structure and hydrogen bond dynamics of water–dimethyl sulfoxide mixtures by computer simulations

TL;DR: Soper et al. as discussed by the authors used two different force field models to study concentrated dimethyl sulfoxide (DMSO)-water solutions by molecular dynamics, and the pattern of hydrogen bonding and the distribution of hydrogen bond lifetimes in the simulated mixtures were further investigated.

Structure and hydrogen bond dynamics of water-dimethyl sulfoxide mixtures by computer simulations. Interim report, April 1992-October 1993

A. Luzar, +1 more
TL;DR: In this paper, the authors used two different force field models to study concentrated dimethyl sulfoxide (DMSO)-water solutions by molecular dynamics, and the results of these simulations are shown to compare well with recent neutron diffraction experiments using H/D isotope substitution.
Journal ArticleDOI

Dipole Solvation in Nondipolar Solvents: Experimental Studies of Reorganization Energies and Solvation Dynamics†

TL;DR: In this article, the Stokes shifts observed in both non-ipolar and dipolar solvents can be consistently understood in terms of the relative strength of the interactions between the permanent charge distributions of the solute and solvent molecules.
Journal ArticleDOI

Spatially heterogeneous dynamics investigated via a time-dependent four-point density correlation function

TL;DR: In this paper, a four-point, time-dependent density correlation function g4(r,t) and corresponding structure factor S4(q,t), which measures the spatial correlations between the local liquid density at two points in space, each at two different times, and so are sensitive to dynamical heterogeneity is presented.
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