Stanford Synchrotron Radiation Lightsource, Stanford, CA 94309, USA.
Phys Chem Chem Phys. 2011 Nov 28;13(44):19997-20007. doi: 10.1039/c1cp22804h. Epub 2011 Oct 19.
We have developed wide-angle X-ray diffraction measurements with high energy-resolution and accuracy to study water structure at three different temperatures (7, 25 and 66 °C) under normal pressure. Using a spherically curved Ge crystal an energy resolution better than 15 eV has been achieved which eliminates influence from Compton scattering. The high quality of the data allows for a reliable Fourier transform of the experimental data resolving shell structure out to ~12 Å, i.e. 5 hydration shells. Large-scale molecular dynamics (MD) simulations using the TIP4P/2005 force-field reproduce excellently the experimental shell-structure in the range 4-12 Å although less agreement is seen for the first peak in the intermolecular pair-correlation function (PCF). The Shiratani-Sasai Local Structure Index [J. Chem. Phys. 104, 7671 (1996)] identifies a tetrahedral minority giving the intermediate-range oscillations in the O-O PCF and a disordered majority providing a more featureless background in this range. The current study supports the proposal that the structure of liquid water, even at high temperatures, can be described in terms of a two-state fluctuation model involving local structures related to the high-density and low-density forms of liquid water postulated in the liquid-liquid phase transition hypothesis.
我们已经开发出具有高能量分辨率和准确性的广角 X 射线衍射测量技术,以在常压下研究三种不同温度(7、25 和 66°C)下的水结构。使用球形弯曲的 Ge 晶体,我们实现了优于 15 eV 的能量分辨率,消除了康普顿散射的影响。高质量的数据允许对实验数据进行可靠的傅里叶变换,解析出壳层结构,直至约 12 Å,即 5 个水合壳层。使用 TIP4P/2005 力场的大规模分子动力学 (MD) 模拟极好地再现了实验壳层结构,范围在 4-12 Å 之间,尽管在分子间对关联函数 (PCF) 的第一个峰值处的一致性较差。Shiratani-Sasai 局部结构指数 [J. Chem. Phys. 104, 7671 (1996)] 确定了四面体的少数派,在 O-O PCF 中产生了中间范围的振荡,以及无序的多数派在该范围内提供了更无特征的背景。目前的研究支持了这样的观点,即即使在高温下,液体水的结构也可以用涉及与液体-液体相变假说中假设的高密度和低密度液体水形式相关的局部结构的两态波动模型来描述。