首页> 外文期刊>Journal of Physics. Condensed Matter >Distributions of single-molecule properties as tools for the study of dynamical heterogeneities in nanoconfined water
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Distributions of single-molecule properties as tools for the study of dynamical heterogeneities in nanoconfined water

机译:单分子性质的分布作为研究纳米密闭水中动力学非均质性的工具

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摘要

The explicit trend of the distribution functions of single-molecule rotational relaxation constants and atomic mean-square displacement are used to study the dynamical heterogeneities in nanoconfined water. The trend of the single-molecule properties distributions is related to the dynamic heterogeneities, and to the dynamic crossovers found in water clusters of different shapes and sizes and confined in a variety of zeolites. This was true in all the cases that were considered, in spite of the various shapes and sizes of the clusters. It is confirmed that the high temperature dynamical crossover occurring in the temperature range 200–230 K can be interpreted at a molecular level as the formation of almost translationally rigid clusters, characterized by some rotational freedom, hydrogen bond exchange and translational jumps as cage-to-cage processes. We also suggest a mechanism for the low temperature dynamical crossover (LTDC), falling in the temperature range 150–185 K, through which the adsorbed water clusters are made of nearly rigid sub-clusters, slightly mismatched, and thus permitting a relatively free librational motion at their borders. It appears that the condition required for LTDC to occur is the presence of highly heterogeneous environments for the adsorbed molecules, with some dangling hydrogen bonds or weaker than water–water hydrogen bonds. Under these conditions some dynamics are permitted at very low temperature, although most rotational motion is frozen. Therefore, it is unlikely, though not entirely excluded, that LTDC will be found in supercooled bulk water where no heterogeneous interface is present.
机译:利用单分子旋转弛豫常数和原子均方位移的分布函数的显式趋势,研究了纳米受限水中的动力学非均质性。单分子性质分布的趋势与动态异质性有关,并且与在不同形状和大小的水团簇中发现并局限于各种沸石中的动态交叉有关。尽管群集的形状和大小各不相同,但在所有考虑的情况下都是如此。可以肯定的是,在200–230 K的温度范围内发生的高温动力学交叉现象,可以在分子水平上解释为几乎是平移刚性簇的形成,其特征是一些旋转自由度,氢键交换和从笼子到笼子的平移跃迁笼过程。我们还提出了一种低温动态分流(LTDC)的机制,其温度范围为150–185 K,通过该机制,吸附的水团簇由几乎刚性的亚簇组成,略有错配,因此可以相对自由地释放在他们的边界运动。看来,LTDC发生所需的条件是被吸附分子存在高度异质的环境,其中有些氢键悬挂或比水-水氢键弱。在这些条件下,尽管大多数旋转运动都被冻结,但在非常低的温度下仍允许某些动力学。因此,尽管没有完全排除在外,但不可能在没有异质界面的过冷散装水中发现LTDC。

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