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Janus 棒状纳米粒子旋转和平动扩散的分子动力学模拟

Molecular Dynamics Simulations of the Rotational and Translational Diffusion of a Janus Rod-Shaped Nanoparticle.

作者信息

Kharazmi Ali, Priezjev Nikolai V

机构信息

Department of Mechanical Engineering, Michigan State University , East Lansing, Michigan 48824, United States.

Department of Mechanical and Materials Engineering, Wright State University , Dayton, Ohio 45435, United States.

出版信息

J Phys Chem B. 2017 Jul 27;121(29):7133-7139. doi: 10.1021/acs.jpcb.7b03720. Epub 2017 Jul 17.

Abstract

The diffusion of a Janus rod-shaped nanoparticle in a dense Lennard-Jones fluid is studied using molecular dynamics (MD) simulations. The Janus particle is modeled as a rigid cylinder whose atoms at each end have different interaction energies with fluid molecules, thus comprising wetting and nonwetting surfaces. We found that both rotational and translational diffusion coefficients are larger for Janus particles with lower average wettability, and these values are bound between the two limiting cases of uniformly wetting and nonwetting particles. It was also shown that values of the diffusion coefficients for displacements parallel and perpendicular to the major axis of a uniformly wetting particle agree well with analytical predictions despite a finite slip at the particle surface present in MD simulations. It was further demonstrated that diffusion of Janus particles is markedly different from that of uniform particles; namely, Janus particles preferentially rotate and orient their nonwetting ends along the displacement vector to reduce drag. This correlation between translation and rotation is consistent with the previous results on diffusive dynamics of a spherical Janus particle with two hemispheres of different wettability.

摘要

使用分子动力学(MD)模拟研究了Janus棒状纳米颗粒在致密Lennard-Jones流体中的扩散。Janus颗粒被建模为一个刚性圆柱体,其两端的原子与流体分子具有不同的相互作用能,从而形成了润湿和非润湿表面。我们发现,平均润湿性较低的Janus颗粒的旋转和平动扩散系数都较大,并且这些值介于均匀润湿颗粒和非润湿颗粒这两种极限情况之间。研究还表明,尽管MD模拟中颗粒表面存在有限滑移,但均匀润湿颗粒平行和垂直于主轴方向位移的扩散系数值与分析预测结果吻合良好。进一步证明,Janus颗粒的扩散与均匀颗粒的扩散明显不同;即Janus颗粒优先旋转并使其非润湿端沿位移矢量方向取向以降低阻力。这种平动与转动之间的相关性与先前关于具有两个不同润湿性半球的球形Janus颗粒扩散动力学的结果一致。

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