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首页> 外文期刊>Bulletin of the Korean Chemical Society >Test of Stokes-Einstein Formula for a Tracer in a Mesoscopic Solvent by Molecular Dynamics Simulation
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Test of Stokes-Einstein Formula for a Tracer in a Mesoscopic Solvent by Molecular Dynamics Simulation

机译:分子动力学模拟测试介观溶剂中示踪剂的斯托克斯-爱因斯坦公式

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In this work, the friction and diffusion coefficients of a tracer in a mesoscopic solvent are evaluated as a function of the tracer size by a hybrid molecular dynamics simulation where solute molecules evolve by Newton's equations of motion but the solvent evolves through the multi-particle collision dynamics. The friction coefficient is shown to scale linearly with the tracer size for larger tracers in accord with predictions of hydrodynamic theories. The diffusion coefficient of tracer is found to be inversely proportional to tracer size. The behavior of Stokes-Einstein formula is validated as a function of tracer size.
机译:在这项工作中,通过混合分子动力学模拟,评估了介电溶剂中示踪剂的摩擦系数和扩散系数,作为示踪剂尺寸的函数,溶质分子通过牛顿运动方程式演化而溶剂通过多粒子碰撞而演化动力学。摩擦系数显示为与示踪剂尺寸成线性比例关系,对于较大的示踪剂,符合流体力学理论的预测。发现示踪剂的扩散系数与示踪剂尺寸成反比。斯托克斯-爱因斯坦公式的行为已验证为示踪剂尺寸的函数。

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