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MOLECULAR DYNAMICS STUDY OF DIELECTRIC FRICTION

机译:介电摩擦的分子动力学研究

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A molecular dynamics study of the friction experienced by the dye molecule resorufamine rotating in a polar solvent is performed. The validity of simple continuum theories of dielectric friction is tested. It is found that the Alavi-Waldeck theory gives reasonable results for the zero frequency dielectric friction coefficient while the Nee-Zwanzig theory requires an unphysically small cavity radius. A procedure for evaluating the time dependent friction kernel from torques and angular velocities, which enables the contributions to the friction from the van der Waals and Coulomb forces to be evaluated separately, is suggested. This study of a realistic system shows that electrostatic interactions can enhance friction by at least two physical mechanisms. First is a contribution to the friction which arises solely from retardation of the solvent reaction field. Second is a contribution arising from local structural changes of the solvent which are driven by the electrostatic field, i.e., a change in the local viscosity. (C) 1996 American Institute of Physics. [References: 42]
机译:进行了分子动力学研究,该染料动力学是由染料分子间苯四胺在极性溶剂中旋转引起的。测试了简单连续介质摩擦理论的有效性。发现Alavi-Waldeck理论给出了零频率介电摩擦系数的合理结果,而Nee-Zwanzig理论要求的空腔半径很小。提出了一种从扭矩和角速度评估随时间变化的摩擦系数的程序,该程序可以分别评估范德华力和库仑力对摩擦的贡献。对现实系统的这项研究表明,静电相互作用可以通过至少两个物理机制增强摩擦。首先是仅由溶剂反应场的延迟引起的摩擦的贡献。第二是由静电场驱动的溶剂的局部结构变化引起的贡献,即局部粘度的变化。 (C)1996年美国物理研究所。 [参考:42]

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