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Anisotropic dynamics of dipolar liquids in narrow slit pores

机译:狭缝中偶极子液体的各向异性动力学

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We report molecular dynamics simulation results for Stockmayer fluids confined to narrow slitlike pores with structureless, nonconducting walls. The translational and rotational dynamics of the dipolar particles have been investigated by calculating autocorrelation functions, diffusion coefficients, and relaxation times for various pore widths (five or less particle diameters) and directions parallel and perpendicular to the walls. The dynamic properties of the confined systems are compared to bulk properties, where corresponding bulk and pore states at the same temperature and chemical potential are determined in parallel grand canonical Monte Carlo simulations. We find that the dynamic behavior inside the pore depends on the distance from the walls and can be strongly anisotropic even in globally isotropic systems. This concerns especially the particles in the surface layers close to the walls, where the single particle and collective dipolar relaxation resemble that of true two-dimensional dipolar fluids with different in-plane and out-of-plane relaxations. On the other hand, bulklike relaxation is observed in the pore center of sufficiently wide pores. (c) 2006 American Institute of Physics.
机译:我们报告了Stockmayer流体的分子动力学模拟结果,该流体被限制在具有无结构,不导电壁的狭窄狭缝状孔中。偶极子粒子的平移和旋转动力学已经通过计算自相关函数,扩散系数和各种孔径(五个或更小的粒径)以及平行于和垂直于壁的方向的弛豫时间进行了研究。将受限系统的动态特性与整体特性进行比较,在相同的温度和化学势下,通过并行的大正则蒙特卡洛模拟确定相应的整体和孔隙状态。我们发现,孔内部的动态行为取决于与壁的距离,即使在全局各向同性的系统中也可能具有强烈的各向异性。这尤其涉及靠近壁的表层中的颗粒,其中单个颗粒和集体偶极弛豫类似于具有不同的面内和面外弛豫的真二维偶极流体。另一方面,在足够宽的孔的孔中心观察到块状松弛。 (c)2006年美国物理研究所。

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