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首页> 外文期刊>Angewandte Chemie >Confinement Effects on the Benzene Orientational Structure
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Confinement Effects on the Benzene Orientational Structure

机译:对苯定向结构的限制效应

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摘要

Liquids under confinement exhibit different properties compared with their corresponding bulk phases, for example, miscibility, phase transitions, and diffusion. The underlying cause is the local ordering of molecules, which is usually only studied using pure simulation methods. Herein, we derive experimentally the structure of benzene confined in MCM-41 using total neutron scattering measurements. The study reveals a layering of molecules across a pore, and four concentric cylindrical shells can be distinguished for a pore with the radius of 18 angstrom. The nanoscale confinement of the liquid has a major effect on the spatial and orientational correlations observed between the molecules, when compared with the structure of the bulk liquid. These differences are most marked for molecules in parallel configurations, and this suggests differences in chemical reactivity between the confined and bulk liquids.
机译:与相应的体相相比,限制的液体具有不同的性质,例如混溶性,相转变和扩散。 潜在的原因是分子的局部排序,通常仅使用纯模拟方法研究。 在此,我们使用总中子散射测量来实验研究苯内局限于MCM-41中的结构。 该研究揭示了穿过孔的分子层,并且可以将四个同心圆柱形壳体区分开于具有18埃半径的孔。 与散装液体的结构相比,液体的纳米尺度限制对分子之间观察到的空间和取向相关性具有重要影响。 这些差异最标记为并行配置的分子,这表明局限性和散装液之间的化学反应性差异。

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