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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >The Effect of Solvent Density Inhomogeneities on Solute Dynamics in Supercritical Fluids: A Theoretical Perspective
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The Effect of Solvent Density Inhomogeneities on Solute Dynamics in Supercritical Fluids: A Theoretical Perspective

机译:溶剂密度不均匀性对超临界流体溶质动力学的影响:理论观点

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The solvating properties of supercritical fluids (SCF) in the compressible region of the phase diagram may be varied dramatically with modest changes in temperature and pressure, making these solvents a promising reaction medium for chemical syntheses. However, it is in just this compressible regime that SCFs exhibit unusual behaviors, such as solvent and solute "clustering," which complicate the prediction of SCF solvent effects on solute dynamics and reaction. Herein we describe the current understanding of solvent "clustering," both in pure SCFs and in SCF solutions, and we discuss the effect that these average solvent density inhomogeneities may have on solvation and on activated solute reactions, as well as the methods by which these effects may be calculated. Additionally, dynamic solute processes may be sensitive to fluctuations of the solvent environment away from its inhomogeneous average, especially if the solvent fluctuations are slow. We thus present a method for examining the distribution of solvent environments experienced by solute molecules, and show that this distribution is indeed both slowly relaxing and broad, spanning a range of behaviors from vapor-like to solid-like. Finally, we point out promising new directions and outstanding questions in the are of solute dynamics in compressible SCFs.
机译:相变图的可压缩区域中的超临界流体(SCF)的溶剂化性质可能会随温度和压力的适度变化而显着变化,从而使这些溶剂成为化学合成的有前途的反应介质。但是,正是在这种可压缩状态下,SCF才显示出异常的行为,例如溶剂和溶质的“团聚”,这使对SCF溶剂对溶质动力学和反应影响的预测变得复杂。本文中,我们描述了目前在纯SCF和SCF溶液中对溶剂“成簇”的理解,并讨论了这些平均溶剂密度不均匀性对溶剂化和活化溶质反应的影响,以及这些方法的作用。效果可以计算出来。另外,动态溶质过程可能会对溶剂环境的波动敏感,远离其不均匀的平均值,尤其是在溶剂波动缓慢的情况下。因此,我们提出了一种检查溶质分子所经历的溶剂环境分布的方法,并表明这种分布确实既缓慢弛豫又宽泛,涵盖了从蒸气状到固体状的一系列行为。最后,我们指出了可压缩SCF中溶质动力学的有希望的新方向和悬而未决的问题。

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