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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Dynamics of bound and free water in an aqueous micellar solution: Analysis of the lifetime and vibrational frequencies of hydrogen bonds at a complex interface - art. no. 061502
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Dynamics of bound and free water in an aqueous micellar solution: Analysis of the lifetime and vibrational frequencies of hydrogen bonds at a complex interface - art. no. 061502

机译:胶束水溶液中结合水和游离水的动力学:复杂界面处氢键的寿命和振动频率分析-艺术。没有。 061502

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In order to understand the nature and dynamics of interfacial water molecules on the surface of complex systems, large scale, fully atomistic molecular dynamics simulations of an aqueous micelle of cesium perfluorooctanoate (CsPFO) surfactant molecules have been carried out. The lifetime and the intermolecular vibrational frequencies of the hydrogen bonds that the water molecules form with the hydrophilic, polar head groups (PHG) of the surfactants are calculated. Our earlier classification [S. Balasubramanian , Curr. Sci. 84, 428 (2003); e-print cond-mat/0212097] of the interfacial water molecules, based on structural and energetic considerations, into bound and free types is further validated by their dynamics. Lifetime correlation functions of the water-surfactant hydrogen bonds show the long-lived nature of the bound water species. Surprisingly, the water molecules that are singly hydrogen bonded to the surfactants have a longer lifetime than those that form two such hydrogen bonds. The free water molecules that do not form any such hydrogen bonds behave similarly to bulk water in their reorientational dynamics. A few water molecules that form two such hydrogen bonds are orientationally locked in for durations of the order of a few hundreds of picoseconds; that is, much longer than their average lifetime. The intermolecular vibrational frequencies of these interfacial water molecules have been studied from the power spectra of their velocity autocorrelation function. We find a significant blue shift in the librational band of the interfacial water molecules, apart from a similar shift in the near neighbor bending modes, relative to water molecules in bulk. These blue shifts suggest an increase in rigidity in the structure around interfacial water molecules. This is in good agreement with recent incoherent, inelastic neutron scattering data on macromolecular solutions [S. Ruffle , J. Am. Chem. Soc. 124, 565 (2002)]. The results of the present simulations appear to be rather general and should be relevant to the understanding of the dynamics of water near any hydrophilic surface. [References: 77]
机译:为了了解复杂系统表面上界面水分子的性质和动力学,已对全氟辛酸铯(CsPFO)表面活性剂分子的水性胶束进行了大规模,完全原子的分子动力学模拟。计算了水分子与表面活性剂的亲水极性头基(PHG)形成的氢键的寿命和分子间振动频率。我们之前的分类[S. Balasubramanian,Curr。科学84,428(2003);基于结构和能量的考虑,将界面水分子分为结合型和自由型的电子版印刷品cond-mat / 0212097]可以通过其动力学得到进一步验证。水表面活性剂氢键的终生相关函数显示了结合水物种的长寿命性质。出乎意料的是,仅氢键合至表面活性剂的水分子比形成两个这样的氢键的水分子具有更长的寿命。不形成任何氢键的游离水分子在重新定向动力学方面的行为与本体水类似。形成两个这样的氢键的几个水分子被定向锁定了数百皮秒的时间。也就是说,比他们的平均寿命长得多。已经从它们的速度自相关函数的功率谱研究了这些界面水分子的分子间振动频率。我们发现,相对于大量的水分子,界面水分子的自由能带发生了显着的蓝移,除了在近邻弯曲模式中发生了类似的变化外。这些蓝移表明界面水分子周围结构的刚性增加。这与大分子溶液上最新的非相干,非弹性中子散射数据[S. Ruffle,J。Am。化学Soc。 124,565(2002)]。本模拟的结果似乎相当笼统,应该与对任何亲水表面附近的水动力学的理解有关。 [参考:77]

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