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首页> 外文期刊>Journal of Molecular Liquids >Insights into the structure and dynamics of liquid water: A comparative study of conventional QM/MM and ONIOM-XS MD simulations
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Insights into the structure and dynamics of liquid water: A comparative study of conventional QM/MM and ONIOM-XS MD simulations

机译:洞察液态水的结构和动力学:常规QM / MM和ONIOM-XS MD模拟的比较研究

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Structural and dynamical properties of liquid water have been investigated through molecular dynamics (MD) simulations based on conventional QM/MM scheme and ONIOM-XS method. The region of highest interest, i.e., a sphere which contains a central water molecule and its nearest-neighbor waters, was treated at the Hartree-Fock (HF) level of theory using DZP basis set, while the rest of the system was described by the flexible BJH-CF2 model. With regard to both the HF/MM and ONIOM-XS simulations, the arrangement of hydrogen bonds (HBs) in liquid water is found to be rather flexible, in which the nearest-neighbors are either loosely or tightly bound to the central water molecule. Consequently, this leads to numerous water exchange mechanisms, with either short-live or long-live exchange periods, as well as to large fluctuations in the number of HBs, ranging from 2 to 6, with the prevalent value of 4. By means of the ONIOM-XS simulation, it is observed that the structural arrangement of liquid water with respect to 4 HBs decreases significantly and that the distributions of 2- and 3-fold HB species become more visible, i.e., compared to the HF/MM results. Overall, the observed differences between the HF/MM and ONIOM-XS simulations clearly indicate the important treatment of the ONIOM-XS method in describing the properties of liquid water.
机译:通过基于常规QM / MM方案和ONIOM-XS方法的分子动力学(MD)模拟研究了液态水的结构和动力学性质。使用DZP基集在Hartree-Fock(HF)的理论水平上对最感兴趣的区域(即包含中心水分子及其最近邻水的球体)进行了处理,而系统的其余部分由灵活的BJH-CF2模型。关于HF / MM和ONIOM-XS模拟,发现液态水中氢键(HBs)的排列相当灵活,其中最近的邻居松散地或紧密地结合在中央水分子上。因此,这导致了许多水交换机制,无论是短生命周期还是长生命周期的交换期,以及HBs数量的大波动,范围从2到6,流行值为4。在ONIOM-XS模拟中,观察到液态水相对于4个HBs的结构排列显着减少,并且与HF / MM结果相比,2倍和3倍HB种类的分布更明显。总的来说,在HF / MM和ONIOM-XS模拟之间观察到的差异清楚地表明了ONIOM-XS方法在描述液态水特性方面的重要处理。

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