首页> 外文期刊>The Journal of Chemical Physics >Structural anomaly and dynamic heterogeneity in cycloether/water binary mixtures: Signatures from composition dependent dynamic fluorescence measurements and computer simulations
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Structural anomaly and dynamic heterogeneity in cycloether/water binary mixtures: Signatures from composition dependent dynamic fluorescence measurements and computer simulations

机译:环醚/水二元混合物中的结构异常和动态异质性:依赖于成分的动态荧光测量和计算机模拟的签名

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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 similar to 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. (C) 2016 AIP Publishing LLC.
机译:我们已经进行了稳态紫外可见吸收和时间分辨荧光测量以及计算机模拟,以探索助溶剂摩尔分数引起的水/二恶烷(Diox)和水/四氢呋喃(THF)二元混合物的结构和动力学性质变化。 Diox是四极溶剂,而THF是双极溶剂,尽管两者都是环状分子并代表环醚。这里的重点是这些环醚是否可以引起水H键网络结构的硬化和转变,如果可以,这种结构修饰是否可以区分助溶剂分子的化学性质(偶极或四极)。取决于组成的实测荧光寿命和溶解的偶极溶质(Coumarin 153,C153)的旋转时间表明,在0.1 <= X-THF / Diox <= 0.2方案,对化学性质无特定依赖性。有趣的是,吸收测量结果显示,在两种环醚存在下,水H键结构的硬化几乎相等,摩尔分数X-THF / Diox近似于0.05。接近临界溶液温度或浓度的测量结果表明,溶液临界度对异常结构变化没有作用。已经发现在非常稀的浓度下环醚聚集的证据。模拟的径向分布函数反映了在这些混合物组成处各个峰高的突然变化,在这些峰周围荧光测量结果显示出结构转变。在这些助溶剂浓度附近,模拟的水配位数(对于溶解的C153)和氢键的数量也显示出最小值。此外,还针对两种混合物模拟了几个动态异质性参数,以探索助溶剂的结构转变和化学性质对这些系统异质性动力学的影响。模拟的四点动态磁化率表明在溶液结构中诱导局部异质性的簇的形成。 (C)2016 AIP出版有限责任公司。

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