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首页> 外文期刊>The Journal of Chemical Physics >Molecular dynamics simulation of the forces between colloidal nanoparticles in n-decane solvent
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Molecular dynamics simulation of the forces between colloidal nanoparticles in n-decane solvent

机译:正癸烷溶剂中胶体纳米颗粒之间力的分子动力学模拟

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Molecular dynamics is utilized to simulate solvation forces between two nanoparticles immersed in liquid n-decane. Three types of solvophilic nanoparticles are investigated with sizes in the 1-6 nm range: small and large amorphous spheres and crystalline cubes. We find that the solvation forces are negligible for the small spheres, which have diameters comparable to the end-to-end distance of all-trans decane, and we attribute this to the inability of the small spheres to induce decane ordering in the interparticle gap. The cubic nanoparticles (and to a lesser extent, the large spheres) are able to induce the formation of solidlike, n-decane layers in their gap for certain nanoparticle separations, and the transition between layered and disordered structures leads to solvation forces that oscillate between repulsion and attraction as the nanoparticle separation is varied. We find that the Derjaguin approximation [B. V. Derjaguin, Kolloid-Z. 69, 155 (1934)] is not effective at describing the dependence of the solvation forces on nanoparticle size and shape-contrasting results from a previous study involving these nanoparticles in Lennard-Jones solvent [Y. Qin and K. A. Fichthorn, J. Chem. Phys. 119, 9745 (2003)]. In particular, we find that for decane, the magnitude of the repulsive solvation forces is sensitive to nanoparticle size and shape, a phenomenon we attribute to the size and rigid-rod structure of n-decane, which makes its ordering in the interparticle gap sensitive to the size and the surface roughness of the nanoparticles.
机译:利用分子动力学来模拟浸入液体正癸烷中的两个纳米颗粒之间的溶剂化力。研究了三种类型的亲溶剂纳米颗粒,其大小在1-6 nm范围内:大小的无定形球体和晶体立方体。我们发现溶剂化力对于小球而言可以忽略不计,小球的直径与全反癸烷的端到端距离相当,我们将其归因于小球无法在粒子间间隙中诱导癸烷有序化。立方纳米粒子(在较小程度上为大球体)能够在间隙中诱导形成固体状正癸烷层,从而实现某些纳米粒子的分离,层状结构和无序结构之间的过渡导致溶剂化力在随着纳米颗粒分离的变化而排斥和吸引。我们发现Derjaguin近似[B. V.Derjaguin,Kolloid-Z。 69,155(1934)]不能有效地描述溶剂化力对纳米粒子尺寸的依赖性以及先前有关将这些纳米粒子纳入Lennard-Jones溶剂的研究的形状对比结果[Y. Qin and K.A.Fichthorn,J.Chem。物理119,9745(2003)]。特别地,我们发现对于癸烷,排斥溶剂化力的大小对纳米粒子的大小和形状敏感,这是我们将其归因于正癸烷的大小和刚性棒结构的现象,这使其在粒子间间隙中的排列变得敏感纳米粒子的大小和表面粗糙度。

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