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首页> 外文期刊>The Journal of Chemical Physics >The temperature dependent structure of liquid 1-propanol as studied by neutron diffraction and EPSR simulations
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The temperature dependent structure of liquid 1-propanol as studied by neutron diffraction and EPSR simulations

机译:用中子衍射和EPSR模拟研究液体1-丙醇的温度依赖性结构

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The structure of liquid 1-propanol is investigated as a function of temperature using neutron diffraction together with Empirical Potential Structure Refinement modelling. The combined diffraction and computer modelling analysis demonstrates that propanol molecules form hydrogen bonded clusters with a relatively wide size distribution, which broadens at lower temperatures. We find that the cluster size distribution is well described by a recently proposed statistical model for branched H-bonded networks [P. Sillrén, J. Bielecki, J. Mattsson, L. B?rjesson, and A. Matic, J. Chem. Phys. 136, 094514 (2012)]10.1063/1.3690137. The average cluster size increases from ~3 to 7 molecules, whilst the standard deviation of the size distribution increases from 3.3 to 8.5 as the temperature is decreased from 293 to 155 K. The clusters are slightly branched, with a higher degree of branching towards lower temperatures. An analysis of the cluster gyration tensor (R_(mn)) reveals an average elongated ellipsoidal shape with axes having proportions 1:1.4:1.9. We find that the average radius of gyration has a cluster size dependence consistent with that of fractal clusters, R_g ∝ _n ~(1/D), with a fractal dimension D ≈ 2.20, which is close to D = 2.00 expected for an ideal random walk or D = 2.11 expected for reaction limited aggregation. The characteristic angles between the H-bonded OH-groups that constitute the clusters show only a weak temperature dependence with O-H?O angles becoming more narrowly distributed around 180° at lower temperatures.
机译:使用中子衍射和经验势结构细化模型,研究了液体1-丙醇的结构随温度的变化。组合的衍射和计算机模型分析表明,丙醇分子形成氢键簇,具有相对较宽的尺寸分布,在较低温度下会展宽。我们发现,通过最近提出的分支H键网络的统计模型可以很好地描述簇的大小分布[P. Sillrén,J.Bielecki,J.Mattsson,L.B?rjesson和A.Matic,J.Chem。物理136,094514(2012)] 10.1063 / 1.3690137。当温度从293 K降低到155 K时,平均簇大小从约3个分子增加到7个分子,而尺寸分布的标准偏差从3.3个增加到8.5K。这些簇略有分支,分支度越高,分支度越低温度。对团簇旋转张量(R_(mn))的分析显示出平均细长椭圆形,其轴的比例为1:1.4:1.9。我们发现,平均回转半径具有与分形簇R_g _n〜(1 / D)一致的簇大小依赖性,其分形维数D≈2.20,接近于理想随机数的D = 2.00。步行或D = 2.11预期反应受限的聚集。构成簇的H键合的OH基之间的特征角仅表现出较弱的温度依赖性,在较低温度下,O-H 2 O角在180°附近变得更狭窄地分布。

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