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Nanoscopic length scale dependence of hydrogen bonded molecular associates' dynamics in methanol

机译:纳米镜键合分子缔合物在甲醇中动态的依赖性依赖性

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In a recent paper [C. E. Bertrand et al., J. Chem. Phys. 145, 014502 (2016)], we have shown that the collective dynamics of methanol shows a fast relaxation process related to the standard density-fluctuation heat mode and a slow non-Fickian mode originating from the hydrogen bonded molecular associates. Here we report on the length scale dependence of this slow relaxation process. Using quasielastic neutron scattering and molecular dynamics simulations, we show that the dynamics of the slow process is affected by the structuring of the associates, which is accessible through polarized neutron diffraction experiments. Using a series of partially deuterated samples, the dynamics of the associates is investigated and is found to have a similar time scale to the lifetime of hydrogen bonding in the system. Both the structural relaxation and the dynamics of the associates are thermally activated by the breaking of hydrogen bonding.
机译:在最近的一篇论文中[C. E. Bertrand等人。,J.Chem。 物理。 我们已经表明,甲醇的集体动力学显示出与标准密度波动热模式相关的快速松弛过程和源自氢键分子辅助的慢性非Fickian模式。 在这里,我们报告了这种缓释过程的长度尺度依赖性。 使用Quasielasty中子散射和分子动力学模拟,我们表明慢过程的动态受缔合的结构影响,可通过偏振中子衍射实验访问。 使用一系列部分氘代样品,研究了联想的动态,并发现了在系统中氢键的寿命具有类似的时间尺度。 通过破裂氢键来热激活结构松弛和动力学。

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