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Structure and dynamics of the hydration shells of the Al3+ ion

机译:Al3 +离子水化壳的结构和动力学

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First principles simulations of the hydration shells surrounding Al3+ ions are reported for temperatures near 300 degrees C. The predicted six water molecules in the octahedral first hydration shell were found to be trigonally coordinated via hydrogen bonds to 12 s shell water molecules in agreement with the putative structure used to analyze the x-ray data, but in disagreement with the results reported from conventional molecular dynamics using two-and three-body potentials. Bond lengths and angles of the water molecules in the first and second hydration shells and the average radii of these shells also agreed very well with the results of the x-ray analysis. Water transfers into and out of the second solvation shell were observed to occur on a picosecond time scale via a dissociative mechanism. Beyond the second shell the bonding pattern substantially returned to the tetrahedral structure of bulk water. Most of the simulations were done with 64 solvating water molecules (20 ps). Limited simulations with 128 water molecules (7 ps) were also carried out. Results agreed as to the general structure of the solvation region and were essentially the same for the first and second shell. However, there were differences in hydrogen bonding and Al-O radial distribution function in the region just beyond the second shell. At the end of the second shell a nearly zero minimum in the Al-O radial distribution was found for the 128 water system. This minimum is less pronounced minimum found for the 64 water system, which may indicate that sizes larger than 64 may be required to reliably predict behavior in this region.
机译:据报道,围绕Al3 +离子的水合壳的基本原理模拟是在温度接近300摄氏度的情况下进行的。发现八面体第一水合壳中的预测六个水分子通过氢键与12 s壳水分子呈三角关系,与推定一致用于分析X射线数据的结构,但与使用两体和三体电位的常规分子动力学所报告的结果不同。第一和第二水合壳中水分子的键长和键角以及这些壳的平均半径也与X射线分析的结果非常吻合。观察到水通过解离机制在皮秒级的时间内进出第二溶剂化壳。在第二壳之外,结合图案基本上返回到散装水的四面体结构。大多数模拟是使用64个溶剂化水分子(20 ps)进行的。还使用128个水分子(7 ps)进行了有限的模拟。关于溶剂化区域的总体结构的结果是一致的,并且对于第一和第二壳而言基本相同。但是,在第二个壳层之外的区域中,氢键和Al-O径向分布函数存在差异。在第二个外壳的末端,发现128水系统的Al-O径向分布几乎接近零。对于64个供水系统,该最小值不太明显,这可能表明可能需要大于64的尺寸才能可靠地预测该区域的行为。

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